Luana Caron

Possui graduação e doutorado em Física pela Universidade Estadual de Campinas (2003/2008) este último com estágio na Universiteit van Amsterdam (2007). Pós-doutorados na Delft University of Technology, Uppsala University e no Max-Planck-Institut für Chemische Physik fester Stoffe, Alemanha. Atualmente é Junior Professor na Bielefeld University como parte do Projeto BiBer em colaboração com o Helmholtz Zentrum Berlin. Tem experiência na área de Física, com ênfase em Física da Matéria Condensada, atuando principalmente nos seguintes temas: materiais magnéticos, efeito magnetocalórico, transições de fase e acoplamento magneto-elástico.

Informações coletadas do Lattes em 12/04/2026

Acadêmico

Formação acadêmica

Doutorado em Física

2004 - 2008

Universidade Estadual de Campinas
Título: Da síntese e do efeito magnetocalórico de compostos derivados do Fe2P, Mn2Sb e MnAs
Orientador: em Universiteit van Amsterdam ( Ekkes Brück)
com , Ano de obtenção: 2008. Sérgio Gama. Coorientador: Ekkes Brück. Bolsista do(a): Fundação de Amparo à Pesquisa do Estado de São Paulo, FAPESP, Brasil. Palavras-chave: efeito magnetocalórico; materiais magnéticos; refrigeração magnética.Grande área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Equação de Estado, Equilíbrio de Fases e Transições de Fase. Grande Área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Materiais Magnéticos e Propriedades Magnéticas. Grande Área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Estrutura de Líquidos e Sólidos; Cristalografia. Setores de atividade: Educação.

Graduação em Física Bacharelado

2000 - 2003

Universidade Estadual de Campinas
Orientador: Sérgio Gama
Bolsista do(a): Fundação de Amparo à Pesquisa do Estado de São Paulo, FAPESP, Brasil.

Pós-doutorado

2015 - 2017

Pós-Doutorado. , Max-Planck-Institut für Chemische Physik fester Stoffe, MPI-CPFS, Alemanha. , Bolsista do(a): Max Planck Society, MPG, Alemanha. , Grande área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Materiais Magnéticos e Propriedades Magnéticas. , Grande Área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Estrutura de Líquidos e Sólidos; Cristalografia.

2012 - 2015

Pós-Doutorado. , Delft University of Technology, TU DELFT, Holanda. , Bolsista do(a): Stichting voor Fundamenteel Onderzoek der Materie, FOM, Holanda. , Grande área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Materiais Magnéticos e Propriedades Magnéticas. , Grande Área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Equação de Estado, Equilíbrio de Fases e Transições de Fase. , Grande Área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Estrutura de Líquidos e Sólidos; Cristalografia.

2011 - 2012

Pós-Doutorado. , Uppsala Universitet, U.UPPSALA, Suécia. , Bolsista do(a): Uppsala Universitet, UU, Suécia. , Grande área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Materiais Magnéticos e Propriedades Magnéticas. , Grande Área: Ciências Exatas e da Terra / Área: Física. , Grande Área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada.

2008 - 2010

Pós-Doutorado. , Delft University of Technology, TU DELFT, Holanda. , Bolsista do(a): Stichting voor Fundamenteel Onderzoek der Materie, FOM, Holanda. , Grande área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Estrutura de Líquidos e Sólidos; Cristalografia. , Grande Área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada / Especialidade: Materiais Magnéticos e Propriedades Magnéticas.

Formação complementar

2010 - 2010

Polarized Neutrons in Condensed Matter Investigati. (Carga horária: 32h). , Delft University of Technology, TU DELFT, Holanda.

2010 - 2010

X-rays and Neutrons in Material Science. (Carga horária: 32h). , Delft University of Technology, TU DELFT, Holanda.

2010 - 2010

Short Course on High Pressure Synchrotron Techniqu. (Carga horária: 24h). , Argonne National Laboratory, ANLAB*, Estados Unidos.

2010 - 2010

47th Course: Materials for Renewable Energy. (Carga horária: 40h). , Ettore Majorana Centre For Scientific Culture, Itália.

2009 - 2009

41st course: High-Pressure Crystallography. (Carga horária: 40h). , Ettore Majorana Centre For Scientific Culture, Itália.

2008 - 2008

Health Physics, level 5A. (Carga horária: 20h). , Delft University of Technology, TU DELFT, Holanda.

2005 - 2005

Extensão universitária em Magnetic and Conventional Refrigeration. (Carga horária: 24h). , Universidade Estadual de Campinas, UNICAMP, Brasil.

2005 - 2005

Extensão universitária em The Magnetocaloric Effect. (Carga horária: 40h). , Universidade Estadual de Campinas, UNICAMP, Brasil.

2002 - 2002

Extensão universitária em Tópicos em Física teórica. (Carga horária: 30h). , Universidade Estadual Paulista Júlio de Mesquita Filho, UNESP, Brasil.

Idiomas

Bandeira representando o idioma Inglês

Compreende Bem, Fala Bem, Lê Bem, Escreve Bem.

Bandeira representando o idioma Português

Compreende Bem, Fala Bem, Lê Bem, Escreve Bem.

Bandeira representando o idioma Italiano

Compreende Bem, Fala Razoavelmente, Lê Razoavelmente.

Bandeira representando o idioma Francês

Compreende Razoavelmente, Fala Pouco, Lê Pouco.

Bandeira representando o idioma Alemão

Fala Razoavelmente, Lê Razoavelmente, Escreve Pouco.

Bandeira representando o idioma Holandês

Compreende Razoavelmente, Fala Pouco, Lê Razoavelmente, Escreve Pouco.

Áreas de atuação

Grande área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada.

Grande área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada/Especialidade: Materiais Magnéticos e Propriedades Magnéticas.

Grande área: Ciências Exatas e da Terra / Área: Física / Subárea: Física da Matéria Condensada/Especialidade: Estrutura de Líquidos e Sólidos; Cristalografia.

Organização de eventos

Brück, E. ; Caron, L. ; BANGA, N. ; KRAAIJ, I. V. D. . Delft Days on Magnetocalorics. 2015. (Congresso).

BRUCK, E. ; Caron, L. ; BANGA, N. ; KRAAIJ, I. V. D. . Delft Days on Magnetocalorics. 2013. (Congresso).

KEDOUS-LEBOUC, A. ; FRUCHART, D. ; RANGO, P. ; MIRAGLIA, S. ; YONNET, J. ; FRANCOIS, F. ; LOUBINOUX, M. ; VASILE-MULLER, C. ; EGOLF, P. ; BRUCK, E. ; Caron, L ; KITANOVSKI, A. ; TAGLIAFICO, L. ; TAGLIAFICO, G. . 5th IIR/IIF International Conference on Magnetic Refrigeration at Room Temperature. 2012. (Congresso).

Brück, E. ; Caron, L ; BANGA, N. ; KRAAIJ, I. V. D. . Delft Days on Magnetocalorics. 2011. (Congresso).

Participação em eventos

Joint European Magnetics Symposia. Magnetic anisotropy and magnetocaloric effect in Ni-PtMnGa. 2016. (Congresso).

Taking the temperature of phase transitions in cool materials. 2016. (Oficina).

Winton Meeting on Caloric Materials.Winton Meeting on Caloric Materials. 2016. (Encontro).

Delft Days on Magnetocalorics.Designing cubic Heusler alloys for magnetocaloric-based applications. 2015. (Oficina).

EMN Istanbul Conference. Under pressure: hydrostatic pressure and magnetoelastic coupling in MCE materials. 2015. (Congresso).

International Conference on Magnetism. Quasi-zero volume change 1st order phase transition on (Mn,Fe)2(P,A) A = Ge, Si magne- tocaloric compounds. 2015. (Congresso).

Pearl Opening Workshop, TUDelft.Magnetic order in magneto-caloric Fe2P-based compounds. 2015. (Oficina).

Workshop on ab-initio modelling of adaptive d- and f-electron magnetic materials.The competition between magnetic moment and chemical bond formation in transition metal based magnetocaloric compounds. 2015. (Oficina).

6th IIR International Conference on Magnetic Refrigeration. Stability of (Mn,Fe)2(P,A) A = Ge, Si compounds on thermo-magnetic cycling. 2014. (Congresso).

CIMTEC 2014 - 6th Forum on new materials. The magneto-structural coupling in MnCoGe-compounds. 2014. (Congresso).

INTERMAG Europe. Inverse magnetocaloric effect on Mn2Sb-based compounds. 2014. (Congresso).

Physics@FOM Veldhoven. Magnetic and magnetocaloric properties of Mn2-xCrxSb compounds. 2014. (Congresso).

58th Annual Magnetism and Magnetic Materials Conference. Zero volume change first-order phase transition in Fe2P-based magnetocaloric compounds. 2013. (Congresso).

Delft Days on Magnetocalorics.Magnetocrystalline anisotropy and the magnetocaloric effect in Fe2P. 2013. (Oficina).

Donostia International Conference on Nanoscaled Magnetism and Applications. Magnetic and magnetocaloric properties of Mn2-xCrxSb compounds. 2013. (Congresso).

Joint European Magnetics Symposia. The magnetic properties of Fe2P under pressure revisited: the influence of composition on the T-P diagram and magnetocaloric effects. 2013. (Congresso).

Physics@FOM Veldhoven. Zero volume change first-order phase transition in (Fe,Mn)2(P,Si) magnetocaloric compounds. 2013. (Congresso).

Energy Relevant Materials.The magnetocaloric effect on Fe2P. 2012. (Simpósio).

Fifth IIF-IIR International Conference on Magnetic Refrigeration at Room Temperature - THERMAG 2012. The Magnetocaloric Effect on Single Crystalline Fe2P. 2012. (Congresso).

International Conference on Magnetism. The effect of hydrostatic pressure on the Morin transition in hematite nanoparticles. 2012. (Congresso).

International Conference on Magnetism. Magnetic and magnetocaloric properties of polycrystalline Fe2P under hydrostatic pressure. 2012. (Congresso).

Joint European Magnetics Symposia.The magnetocaloric effect in hematite nanoparticles. 2012. (Simpósio).

Delft Days on Magnetocalorics.Giant magnetocaloric effect and magneto-crystalline coupling. 2011. (Simpósio).

First Euro-Mediterranean Meeting on Functionalized Materials.(Mn,Fe)2(P,Si) compounds for magnetocaloric applications. 2011. (Encontro).

2010 MRS Fall Meeting. Magnetoelastic Phase Transitions under Hydrostatic Pressure. 2010. (Congresso).

4th International Conference of the IIR on Magnetic refrigeration at Room Temperature - THERMAG 2010. Study on the nature of magnetoelastic phase transitions using hydrostatic pressure. 2010. (Congresso).

Scientific meeting on Chemistry related to Physics & Material sciences.Transition metal- based refrigerants for room-temperature application. 2010. (Encontro).

3rd International Conference of the IIR on Magnetic refrigeration at Room Temperature - THERMAG 2009. Magnetic entropy change: what are we measuring? A step towards standardization. 2009. (Congresso).

3rd International Conference of the IIR on Magnetic refrigeration at Room Temperature - THERMAG 2009. Pressure effects on the magnetocaloric properties of Mn2-xFexP0.75Ge0.25. 2009. (Congresso).

International Conference on Magnetism. Study of the magnetic and magnetocaloric properties of Mn0.93Cr0.07CoGe under hydrostatic pressure. 2009. (Congresso).

Physics@FOM Veldhoven. Pressure effects on the magnetocaloric properties of MnFeP0.75Ge0.25. 2009. (Congresso).

Delft Days on Magnetocalorics.Determining the magnetocaloric effect in hysteretic materials. 2008. (Simpósio).

Joint European Magnetics Symposia.Inverse magnetocaloric effect on Mn2Sb-based compounds and its possible applications. 2008. (Simpósio).

2nd International Conference of the IIR on Magnetic refrigeration at Room Temperature - THERMAG 2007. On the magnetocaloric effect and structural properties of FeMnSn compound. 2007. (Congresso).

2nd Workshop on Magnetostrictive Materials and Magnetic Refrigeration.Inverse Magnetocaloric Effect on Mn2-xCrxSb Compounds. 2007. (Seminário).

International Conference on Magnetism. Colossal Magnetocaloric Effect in Mn1-xCuxAs Compounds. 2006. (Congresso).

Novel Pressure-Induced Phenomeno in Condensed Matter Physics.Colossal Magnetocaloric Effect Induced by Pressure in MnAs0.95Sb0.05. 2006. (Simpósio).

XXIX Encontro Nacional de Física da Matéria Condensada.Estudo dos Métodos de Preparação dos Compostos FeMnP1-xAsx e do seu Efeito Magnetocalórico. 2006. (Encontro).

4th Brazilian MRS Meeting.On the structural and magnetic properties of MnFeGe1-xSix compounds. 2005. (Encontro).

XXVII Encontro Nacional de Física da Matéria Condensada.Study of the Magnetocaloric Effect on FeMnP0.45As0.55 Compounds. 2004. (Encontro).

2nd Brazilian MRS Meeting.Study of the Magnetocaloric Effect on FeMnP0.45As0.55 Compounds. 2003. (Encontro).

IV Encontro de Jovens Pesquisadores no IFGW.Estudo do Efeito Magnetocalérico em Compostos FeMnP0,45As0,55. 2003. (Encontro).

XXVI Encontro Nacional de Física da Matéria Condensada.Estudo do Efeito Magnetocalórico em Compostos FeMnP0,45As0,55. 2003. (Encontro).

Participação em bancas

Aluno: Anika Kiecana

Brück, Ekkes; VAN DIJK, NIELS; PAPPAS, C.; SVEDLINDH, P.; DEMPSEY, N.; SIEBBELES, L.;Caron, L.. Magnetic Phase Transitions and Magnetic Structures in Mn-based Compounds.. 2023 - Delft University of Technology.

Aluno: Fengqi Zhang

ZHANG, F.; BRUCK, E.; VAN DIJK, NIELS; PAPPAS, C.; MULDER, F.; DEMPSEY, N.; KANG, X.; KLOOSTERMAN, J. L.;Caron, L. Tuning Giant Magnetocaloric Materials A Study of (Mn,Fe)2(P,Si) and NiCoMnTi Heusler Compounds. 2022 - Delft University of Technology.

Aluno: Maria João Portela de Sá Pereira

AMARAL, V. B. S.; KHOLKINE, A. L.; MELO, L. H. V.; ARAUJO, J. P. E.;Caron, L. Local microscopic study of magneto, electro and elastocaloric effects. 2021 - Universidade de Aveiro.

Aluno: Prasenjit Roy

GROENENBOOM, G.; BRUCK, E.;Caron, L.; PALSTRA, T. T. M.; COEHOORN, R.; de Wijs, Gilles A.; GROOT, R. A.. Treatise on Magnetocaloric MnFe(Si,P) Compounds: A First-Principles Study. 2016. Tese (Doutorado em doctor in science) - Radboud University Nijmegen.

Orientou

M

Boeije; Novel magnetocaloric materials for room temperature application; Início: 2013; Orientação de outra natureza; Delft University of Technology; Stichting voor Fundamenteel Onderzoek der Materie; (Orientador);

Anne-Marije Zwerver

Pressure for a new cooling system; 2012; Trabalho de Conclusão de Curso; (Graduação em Natuurkunde) - Delft University of Technology; Orientador: Luana Caron;

Merien Uitterhoeve

Magnetocaloric effect of Mn2-xFexP1-yGey under hydrostatic pressure; 2009; Trabalho de Conclusão de Curso; (Graduação em Natuurkunde) - Delft University of Technology; Orientador: Luana Caron;

Bastian Knoors

Magnetocaloric effect of Mn2-xFexP0; 75Ge0; 25 under hydrostatic pressure; 2008; Trabalho de Conclusão de Curso; (Graduação em Natuurkunde) - Delft University of Technology; Orientador: Luana Caron;

Z

Q; Ou; Magnetic structure and phase formation of magnetocaloric Mn-Fe-P-X compounds; 2013; Orientação de outra natureza; (Natuurkunde) - Delft University of Technology, Stichting voor Fundamenteel Onderzoek der Materie; Orientador: Luana Caron;

X

F; Miao; Novel magnetocaloric materials for room temperature application; 2012; Orientação de outra natureza; (Natuurkunde) - Delft University of Technology, Stichting voor Fundamenteel Onderzoek der Materie; Orientador: Luana Caron;

Produções bibliográficas

  • UKLEEV, VICTOR ; SAMANTA, TAPAS ; UTESOV, OLEG I. ; WHITE, JONATHAN S. ; Caron, Luana . Observation of magnetic skyrmion lattice in Cr0.82Mn0.18Ge by small-angle neutron scattering. Scientific Reports , v. 15, p. 2865, 2025.

  • SAMANTA, TAPAS ; WIESEKOPSIEKER, SVEN ; TAAKE, CHRIS ; Caron, Luana . Asynchronous field-induced ferromagnetism of the two Fe sub-lattices in (Hf,Ta)Fe2: Emergence of an additional first-order phase transition. APL Materials , v. 13, p. 031112, 2025.

  • SAMANTA, TAPAS ; TAAKE, CHRIS ; Caron, Luana . Probing the skyrmion phase of MnSi through the field-exponent of the isothermal entropy change. PHYSICAL REVIEW MATERIALS , v. 9, p. 064413, 2025.

  • GUO, YONG ; GONG, YUANYUAN ; LU, ZIQIAN ; MIAO, XUEFEI ; NIE, JINFENG ; XU, FENG ; Caron, Luana . Ductile behavior of Hf2Ni7 intermetallic phase in FeCoNiHf complex concentrated alloys. JOURNAL OF ALLOYS AND COMPOUNDS , v. 1048, p. 185277, 2025.

  • GUO, WENHUI ; MIAO, XUEFEI ; YAN, ZHUBING ; CHEN, YUNLONG ; GONG, YONG ; QIAN, FENGJIAO ; XU, FENG ; Caron, Luana . Colossal negative thermal expansion over a wide temperature span in dynamically self-assembled MnCo(Ge,Si)/epoxy composites. Materials Research Letters , v. 12, p. 315-323, 2024.

  • TAAKE, CHRIS ; SAMANTA, TAPAS ; Caron, Luana . Field-sensitivity and reversibility of the inverse magnetocaloric effect at martensitic transformations. APPLIED PHYSICS LETTERS , v. 124, p. 052403, 2024.

  • GUO, WENHUI ; MIAO, XUEFEI ; CUI, JIYUAN ; TORII, SHUKI ; QIAN, FENGJIAO ; BAI, YUQING ; KOU, ZONGDE ; ZHA, JIAJU ; SHAO, YANYAN ; ZHANG, YUJING ; XU, FENG ; Caron, Luana . Significantly enhanced reversibility and mechanical stability in grain-oriented MnNiGe-based smart materials. ACTA MATERIALIA , v. 263, p. 119530, 2024.

  • GONG, YONG ; MIAO, XUEFEI ; QIAN, FENGJIAO ; XU, FENG ; Caron, Luana . A brief review of microstructure design in transition metal-based magnetocaloric materials. JOURNAL OF PHYSICS-CONDENSED MATTER , v. 36, p. 503001, 2024.

  • SAMANTA, TAPAS ; TAAKE, CHRIS ; BONDZIO, LAILA ; HÜTTEN, ANDREAS ; Caron, Luana . Interplay between the reversibility of the inverse magnetocaloric effect and kinetic arrest in Ni-Co-Mn-Sn Heusler alloys. JOURNAL OF ALLOYS AND COMPOUNDS , v. 1002, p. 175145, 2024.

  • GONG, YONG ; MIAO, XUE-FEI ; SAMANTA, TAPAS ; TAAKE, CHRIS ; LIU, JUN ; QIAN, FENG-JIAO ; SHAO, YAN-YAN ; ZHANG, YU-JING ; REN, QING-YONG ; Caron, Luana ; XU, FENG . Anomalous thermal expansion and enhanced magnetocaloric effect in-<001>-textured MnxFe5-xSi3 alloys. RARE METALS , v. 43, p. 2263-2274, 2024.

  • MIAO, XUEFEI ; WANG, CHENXU ; LIAO, TUWEI ; JU, SHENGHONG ; ZHA, JIAJU ; WANG, WENYAO ; LIU, JUN ; ZHANG, YUJING ; REN, QINGYONG ; XU, FENG ; Caron, Luana . Novel magnetocaloric composites with outstanding thermal conductivity and mechanical properties boosted by continuous Cu network. ACTA MATERIALIA , v. 242, p. 118453, 2023.

  • WANG, CHENXU ; MIAO, XUEFEI ; ZHA, JIAJU ; GUO, WENHUI ; REN, QINGYONG ; ZHANG, YUJING ; XU, FENG ; Caron, Luana . Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process. SCRIPTA MATERIALIA , v. 223, p. 115067, 2023.

  • GRÜNEBOHM, ANNA ; HÜTTEN, ANDREAS ; BÖHMER, ANNA E. ; FRENZEL, JAN ; EREMIN, ILYA ; DRAUTZ, RALF ; ENNEN, INGA ; Caron, Luana ; KUSCHEL, TIMO ; LECHERMANN, FRANK ; ANSELMETTI, DARIO ; DAHM, THOMAS ; WEBER, FRANK ; ROSSNAGEL, KAI ; SCHIERNING, GABI . A Unifying Perspective of Common Motifs That Occur across Disparate Classes of Materials Harboring Displacive Phase Transitions. Advanced Energy Materials , v. 13, p. 2300754, 2023.

  • WORTMANN, MARTIN ; SAMANTA, TAPAS ; GAERNER, MAIK ; WESTPHAL, MICHAEL ; FIEDLER, JOHANNES ; ENNEN, INGA ; HÜTTEN, ANDREAS ; BLACHOWICZ, TOMASZ ; Caron, Luana ; EHRMANN, ANDREA . Isotropic exchange-bias in twinned epitaxial Co/Co3O4 bilayer. APL Materials , v. 11, p. 121118, 2023.

  • SAMANTA, TAPAS ; TAAKE, CHRIS ; BONDZIO, LAILA ; Caron, Luana . Entropy change reversibility in MnNi Co Ge Al near the triple point. Journal Of Physics-Energy , v. 5, p. 044002, 2023.

  • MIAO, XUEFEI ; GONG, YONG ; ZHANG, FENGQI ; YOU, YURONG ; Caron, Luana ; QIAN, FENGJIAO ; GUO, WENHUI ; ZHANG, YUJING ; GONG, YUANYUAN ; XU, FENG ; VAN DIJK, NIELS ; Brück, Ekkes . Enhanced reversibility of the magnetoelastic transition in (Mn,Fe)2(P,Si) alloys via minimizing the transition-induced elastic strain energy. JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY , v. 103, p. 165-176, 2022.

  • ZHANG, FENGQI ; TAAKE, CHRIS ; HUANG, BOWEI ; YOU, XINMIN ; OJIYED, HAMUTU ; SHEN, QI ; DUGULAN, IULIAN ; Caron, Luana ; VAN DIJK, NIELS ; Brück, Ekkes . Magnetocaloric effect in the (Mn,Fe)2(P,Si) system: From bulk to nano. ACTA MATERIALIA , v. 224, p. 117532, 2022.

  • DOS REIS, RICARDO D. ; Caron, Luana ; SINGH, SANJAY ; FELSER, CLAUDIA ; NICKLAS, MICHAEL . Direct and Indirect Determination of the Magnetocaloric Effect in the Heusler Compound Ni1.7Pt0.3MnGa. Entropy , v. 23, p. 1273, 2021.

  • MIAO, XUEFEI ; GONG, YONG ; Caron, Luana ; YOU, YURONG ; XU, GUIZHOU ; SHEPTYAKOV, DENIS ; MANUEL, PASCAL ; QIAN, FENGJIAO ; ZHANG, YUJING ; XU, FENG ; VAN DIJK, NIELS ; Brück, Ekkes . Switching the magnetostructural coupling in MnCoGe-based magnetocaloric materials. PHYSICAL REVIEW MATERIALS , v. 4, p. 104407, 2020.

  • NETHRAVATHI, C. ; RAJAMATHI, CATHERINE R. ; Caron, Luana ; KALACHE, ADEL ; MACHADO, JYOTHI ; RAJAMATHI, MICHAEL ; FELSER, CLAUDIA . Co O -γ-Fe O Nanocrystal Heterostructures with Enhanced Coercivity and Blocking Temperature. Journal of Physical Chemistry C , v. 124, p. 1623-1630, 2020.

  • EICH, ANDREAS ; GRZECHNIK, ANDRZEJ ; Caron, Luana ; CHENG, YAO ; WILDEN, JOHANNA ; DENG, HAO ; HUTANU, VLADIMIR ; MEVEN, MARTIN ; HANFLAND, MICHAEL ; GLAZYRIN, KONSTANTIN ; HERING, PAUL ; HERRMANN, MARKUS GUIDO ; AIT HADDOUCH, MOHAMMED ; FRIESE, KAREN . Magnetocaloric Mn Si and MnFe Si at variable pressure and temperature. Materials Research Express , v. 6, p. 096118, 2019.

  • BORN, N.-O. ; Caron, L. ; SEELER, F. ; FELSER, C. . Tuning nature and temperature of structural and magnetic phase transitions of (M=Ag, Ni). JOURNAL OF ALLOYS AND COMPOUNDS , v. 793, p. 185-190, 2019.

  • DEVI, P. ; MEJÍA, C. SALAZAR ; Caron, L. ; SINGH, SANJAY ; NICKLAS, M. ; FELSER, C. . Effect of chemical and hydrostatic pressure on the coupled magnetostructural transition of Ni-Mn-In Heusler alloys. PHYSICAL REVIEW MATERIALS , v. 3, p. 122401, 2019.

  • BORN, N.-O. ; Caron, L. ; SEELER, F. ; FELSER, C. . Tunable giant magnetocaloric effect with very low hysteresis in. JOURNAL OF ALLOYS AND COMPOUNDS , v. 749, p. 926-930, 2018.

  • SUKHANOV, A. S. ; SINGH, SANJAY ; Caron, L. ; HANSEN, TH. ; HOSER, A. ; KUMAR, V. ; BORRMANN, H. ; FITCH, A. ; DEVI, P. ; MANNA, K. ; FELSER, C. ; INOSOV, D. S. . Gradual pressure-induced change in the magnetic structure of the noncollinear antiferromagnet. PHYSICAL REVIEW B , v. 97, p. 214402, 2018.

  • Ou, Z.Q. ; Dung, N.H. ; Zhang, L. ; Caron, L. ; TORUN, E. ; VAN DIJK, N.H. ; Tegus, O. ; Brück, E. . Transition metal substitution in Fe2P-based MnFe0.95P0.50Si0.50 magnetocaloric compounds. JOURNAL OF ALLOYS AND COMPOUNDS , v. 730, p. 392-398, 2018.

  • Caron, Luana ; BA DOAN, NGUYEN ; RANNO, LAURENT . On entropy change measurements around first order phase transitions in caloric materials. Journal of Physics. Condensed Matter (Print) , v. 29, p. 075401, 2017.

  • Caron, L. ; DUTTA, B. ; DEVI, P. ; GHORBANI ZAVAREH, M. ; HICKEL, T. ; CABASSI, R. ; BOLZONI, F. ; FABBRICI, S. ; ALBERTINI, F. ; FELSER, C. ; SINGH, SANJAY . Effect of Pt substitution on the magnetocrystalline anisotropy of : A competition between chemistry and elasticity. PHYSICAL REVIEW B , v. 96, p. 054105, 2017.

  • Ou, Z.Q. ; Zhang, L. ; Dung, N.H. ; Caron, L. ; Brück, E. . Structure, magnetism and magnetocalorics of Fe-rich (Mn,Fe)1.95P1-Si melt-spun ribbons. JOURNAL OF ALLOYS AND COMPOUNDS , v. 710, p. 446-451, 2017.

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  • SINGH, SANJAY ; Caron, Luana ; D'SOUZA, SUNIL WILFRED ; Fichtner, Tina ; PORCARI, GIACOMO ; Fabbrici, Simone ; SHEKHAR, CHANDRA ; CHADOV, STANISLAV ; SOLZI, MASSIMO ; FELSER, CLAUDIA . Large Magnetization and Reversible Magnetocaloric Effect at the Second-Order Magnetic Transition in Heusler Materials. Advanced Materials (Weinheim Print) , v. n/a, p. n/a-n/a, 2016.

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  • HÖGLIN, VIKTOR ; HUDL, MATTHIAS ; Caron, Luana ; BERAN, PREMYSL ; SØRBY, MAGNUS H. ; NORDBLAD, PER ; ANDERSSON, YVONNE ; SAHLBERG, MARTIN . Detailed study of the magnetic ordering in FeMnP0.75Si0.25. Journal of Solid State Chemistry (Print) , v. 221, p. 240-246, 2015.

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  • YIBOLE, H. ; GUILLOU, F. ; Caron, L. ; JIMÉNEZ, E. ; DE GROOT, F. M. F. ; ROY, P. ; DE GROOT, R. ; VAN DIJK, N. H. ; Brück, E. . Moment evolution across the ferromagnetic phase transition of giant magnetocaloric compounds. Physical Review. B, Condensed Matter and Materials Physics , v. 91, p. 014429, 2015.

  • MIAO, X. F. ; Caron, L. ; ROY, P. ; DUNG, N. H. ; Zhang, L. ; KOCKELMANN, W. A. ; DE GROOT, R. A. ; VAN DIJK, N. H. ; Brück, E. . Tuning the phase transition in transition-metal-based magnetocaloric compounds. Physical Review. B, Condensed Matter and Materials Physics , v. 89, p. 174429, 2014.

  • HUDL, M. ; CAMPANINI, D. ; CARON, L. ; HÖGLIN, V. ; SAHLBERG, M. ; NORDBLAD, P. ; RYDH, A. . Thermodynamics around the first-order ferromagnetic phase transition of Fe2P single crystals. Physical Review B , v. 90, p. 144432, 2014.

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  • PORCARI, G. ; BUZZI, M. ; CUGINI, F. ; PELLICELLI, R. ; PERNECHELE, C. ; Caron, L. ; BRU'CK, E. ; SOLZI, M. . Direct magnetocaloric characterization and simulation of thermomagnetic cycles. Review of Scientific Instruments , v. 84, p. 073907, 2013.

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  • Dung, Nguyen H. ; Ou, Zhi Qiang ; Caron, Luana ; Zhang, Lian ; Thanh, Dinh T. Cam ; de Wijs, Gilles A. ; de Groot, Rob A. ; Buschow, K. H. Jürgen ; Brück, Ekkes . Mixed Magnetism for Refrigeration and Energy Conversion. ADV ENERGY MATER , v. 1, p. 1215-1219, 2011.

  • Trung, N. T. ; Zhang, L. ; Caron, L. ; Buschow, K. H. J. ; Bru?ck, E. . Giant magnetocaloric effects by tailoring the phase transitions. Applied Physics Letters , v. 96, p. 172504, 2010.

  • Trung, N. T. ; Biharie, V. ; Zhang, L. ; CARON, L. ; Buschow, K. H. J. ; Brück, E. . From single- to double-first-order magnetic phase transition in magnetocaloric Mn1−xCrxCoGe compounds. Applied Physics Letters , v. 96, p. 162507, 2010.

  • von Ranke, P J ; de Oliveira, N A ; Alho, B P ; Plaza, E J R ; de Sousa, V S R ; Caron, L ; Reis, M S . Understanding the inverse magnetocaloric effect in antiferro- and ferrimagnetic arrangements. Journal of Physics. Condensed Matter (Print) , v. 21, p. 056004, 2009.

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  • Cam Thanh, D.T. ; Brück, E. ; Trung, N. T. ; Klaasse, J. C. P. ; Buschow, K. H. J. ; Ou, Zhi Qiang ; Tegus, O. ; CARON, L. . Structure, magnetism, and magnetocaloric properties of MnFeP1−xSix compounds. Journal of Applied Physics , v. 103, p. 07B318, 2008.

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  • von Ranke, P. ; de Campos, A. ; CARON, L. ; COELHO, A. ; GAMA, S. ; de Oliveira, N. . Calculation of the giant magnetocaloric effect in the MnFeP0.45As0.55 compound. PHYSICAL REVIEW B , v. 70, n.094410, p. 094410, 2004.

  • Caron, L. . Magnetocaloric effect in transition metal-based compounds. In: Ekkes Brück. (Org.). Handbook of Magnetic Materials. 1ed.: Elsevier, 2020, v. 29, p. 111-166.

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  • Caron, L. ; HÖGLIN, V. ; ANDERSSON, YVONNE ; NORDBLAD, PER ; Brück, E. . THE MAGNETIC PROPERTIES OF FE2P UNDER PRESSURE REVISITED: THE INFLUENCE OF COMPOSITION ON THE T-P DIAGRAM AND MAGNETOCALORIC EFFECTS. In: Joint European Magnetics Symposia, 2013, Rhodes. Joint European Magnetics Symposia, 2013.

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  • Caron, L. ; PEDDIS, D. ; SUBER, L. ; FIORANI, D. ; NORDBLAD, P. . The effect of hydrostatic pressure on the Morin transition in hematite nanoparticles. In: International Conference on Magnetism, 2012, Busan. International Conference on Magnetism, 2012.

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  • Caron, L. ; PEDDIS, D. ; SUBER, L. ; FIORANI, D. ; NORDBLAD, P. . The magnetocaloric effect in hematite nanoparticles. In: Joint European Magnetics Symposia, 2012, Parma. Proceedings of the Joint European Magnetics Symposia, 2012.

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  • LEITÃO, J.V. ; YOU, X. ; Caron, L ; BRUCK, E. . Exploration of the (Mn,Fe)3(P,Si) quaternary system for magnetocaloric applications. In: Intermag 2011, 2011, Taipei. Proceedings of the Intermag Conference, 2011.

  • Caron, L ; Trung, N. T. ; KNOORS, B. ; UITTERHOEVE, M. ; Ou, Zhi Qiang ; Dung, N.H. ; Brück, Ekkes . Magnetoelastic Phase Transitions under Hydrostatic Pressure. In: 2010 MRS Fall Meeting, 2010, Boston. Proceedings of the 2010 MRS Fall Meeting.

  • Caron, L ; Nguyen, T.T. ; KNOORS, B. ; UITTERHOEVE, M. ; Ou, Zhi Qiang ; Brück, E. . Study on the nature of magnetoelastic phase transitions using hydrostatic pressure. In: 4th International Conference of the IIR on Magnetic refrigeration at Room Temperature, 2010. Proceedings of the 4th International Conference of the IIR on Magnetic refrigeration at Room Temperature, 2010.

  • Nguyen, T.T. ; Zhang, Lian ; Biharie, V. ; Caron, L. ; Buschow, K. H. J. ; Brück, E. . From single- to double-first-order magnetic phase transition in magnetocaloric MnCrGeCo compounds. In: Physics@FOM Veldhoven, 2010, Veldhoven. Physics@FOM Veldhoven, 2010.

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  • Caron, Luana . Transition metal- based refrigerants for room-temperature application. In: Scientific meeting on Cliemistry related to Physics & Material sciences, 2010, Veldhoven. Scientific meeting on Cliemistry related to Physics & Material sciences, 2010.

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  • Trung, N. T. ; Caron, L ; Zhang, L. ; Cam Thanh, D. T. ; Buschow, K. H. J. ; Brück, E. . Magnetocaloric properties of MnFePGe compounds with Co- and V-subsitutions. In: Physics@FOM Veldhoven, 2009, Veldhoven. Physics@FOM Veldhoven, 2009.

  • Caron, L ; KNOORS, B. ; Trung, N. T. ; Brück, E. . Pressure effects on the magnetocaloric properties of MnFeP0.75Ge0.25. In: Physics@FOM Veldhoven, 2009, Veldhoven. Physics@FOM Veldhoven, 2009.

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  • Trung, N. T. ; Zhang, L. ; Caron, L ; Buschow, K. H. J. ; Brück, E. . First-order structural transition and giant magnetocaloric effect in MnCoGe-type alloys. In: International Conference on Magnetism, 2009, Karlsruhe. Proceedings of the International Conference on Magnetism, 2009.

  • Caron, L. . Determining the magnetocaloric effect in hysteretic materials. In: Delft Days on Magnetocalorics, 2008, Delft. Proceedings of the Delft Days on Magnetocalorics, 2008.

  • Caron, L. ; GAMA, S. ; Brück, E. ; Klaasse, J. C. P. . Inverse magnetocaloric effect on Mn2Sb-based compounds and its possible applications. In: Joint European Magnetics Symposia, 2008, Dubin. Proceedings of the Joint European Magnetics Symposia, 2008.

  • Caron, L. ; GAMA, S. ; Brück, E. . nverse Magnetocaloric Effect on Mn2-xCrxSb Compounds. In: 2nd Workshop on Magnetostrictive Materials and Magnetic Refrigeration, 2007, Baden. Proceedings of the 2nd Workshop on Magnetostrictive Materials and Magnetic Refrigeration, 2007.

  • Caron, L. ; A. Magnus G. Carvalho ; A. O. dos Santos ; COELHO, A. ; GAMA, S. ; L. P. Cardoso . On the magnetocaloric effect and structural properties of FeMnSn compound. In: 2nd International Conference of the IIR on Magnetic refrigeration at Room Temperature, 2007, Portoroz2. Proceedings of the 2nd International Conference of the IIR on Magnetic refrigeration at Room Temperature, 2007.

  • IMAIZUMI, M. ; LISBOA, P. N. ; JAFELICCI JR, M. ; VARANDA, L. C. ; GAMA, S. ; COELHO, A. ; CAMPOS, A. ; CARON, L. . Mudanças nas Propriedades Magnéticas e Eletrônicas dos Compostos Intermetálicos de MnAs pela substituiçãode Mn por Cr. In: XXIX Encontro Nacional de Física da Matéria Condensada, 2006, São Lourenço, MG. Anais do XXIX Encontro Nacional de Física da Matéria Condensada.

  • CARON, L. ; CAMPOS, A. ; MENEZES, A. ; COELHO, A. ; GAMA, S. . Estudo dos Métodos de Preparação dos Compostos FeMnP1-xAsx e do seu Efeito Magnetocalórico. In: XXIX Encontro Nacional de Física da Matéria Condensada, 2006, São Lourenço, MG. Anais do XXIX Encontro Nacional de Física da Matéria Condensada, 2006.

  • ROCCO, D. L. ; CAMPOS, A. ; A. Magnus G. Carvalho ; CARON, L. ; COELHO, A. ; GAMA, S. ; GANDRA, F. C. G. ; A. O. dos Santos ; L. P. Cardoso ; RANKE, P. J. V. ; OLIVEIRA, N. A. . Colossal Magnetocaloric Effect in Mn1-xCuxAs Compounds. In: International Conference on Magnetism, 2006, Kyoto. Proceedings of the International Conference on Magnetism, 2006.

  • CAMPOS, A. ; ROCCO, D. L. ; A. Magnus G. Carvalho ; CARON, L. ; A. O. dos Santos ; GAMA, S. ; SILVA, L. M. ; GANDRA, F. C. G. ; L. P. Cardoso ; RANKE, P. J. V. ; OLIVEIRA, N. A. . Colossal Magnetocaloric Effect in Mn1-xFexAs Compounds at Ambient Pressure. In: International Conference on Magnetism, 2006, Kyoto. Proceedings of the International Conference on Magnetism, 2006.

  • CAMPOS, A. ; A. Magnus G. Carvalho ; TRAVA, B. U. ; CARON, L. ; COELHO, A. ; GAMA, S. ; RANKE, P. J. V. ; OLIVEIRA, N. A. . Colossal Magnetocaloric Effect Induced by Pressure in MnAs0.95Sb0.05. In: Novel Pressure -induced Phenomena in Condensed Matter Physics, 2006, Fukuoka. Program and Abstracts - Novel Pressure -induced Phenomena in Condensed Matter Physics, 2006.

  • CAMPOS, A. ; Rocco, Daniel L. ; A. Magnus G. Carvalho ; Caron, L. ; COELHO, A. ; GAMA, S. ; SILVA, L. M. ; Gandra, Fla?vio C. G. ; A. O. dos Santos ; L. P. Cardoso ; RANKE, P. J. V. . Structural Properties of Mn1-xRxAs (R=Fe,Cu) (Colossal) Magnetocaloric Compounds. In: International Conference on Magnetism, 2006, Kyoto. Proceedings of the International Conference on Magnetism, 2006.

  • IMAIZUMI, M. ; LISBOA, P. N. ; JAFELICCI, M. ; GAMA, S. ; COELHO, A. ; CAMPOS, A. ; Caron, L. . Change in Magnetic and Electronic Properties of MnAs Compound due to Substituion of Mn by Cr.. In: V Encontro da Sociedade Brasileira de Pesquisadores em Materiais, 2006, Florianópolis. V Encontro da Sociedade Brasileira de Pesquisadores em Materiais, 2006.

  • IMAIZUMI, M. ; BUENO, A. A. ; JAFELICCI JR, M. ; VARANDA, L. C. ; GAMA, S. ; COELHO, A. ; CAMPOS, A. ; Caron, L. ; SAMBRANO, J. R. . Calculation Of Electronic, Structural and Elastic Properties Of Fe2mnAs Heuserl Intermetallic Compound. In: V Encontro da Sociedade Brasileira de Pesquisadores em Materiais, 2006, Florianópolis. V Encontro da Sociedade Brasileira de Pesquisadores em Materiais, 2006.

  • CARON, L. ; A. Magnus G. Carvalho ; A. O. dos Santos ; CAMPOS, A. ; COELHO, A. ; L. P. Cardoso ; GAMA, S. . On the structural and magnetic properties of MnFeGe1-xSix compounds. In: IV Brazilian MRS Meeting, 2005, Recife. IV Encontro da Sociedade Brasileira de Pesquisa em Materiais, 2005.

  • CARON, L. ; CAMPOS, A. ; COELHO, A. ; GAMA, S. . Estudo do efeito Magnetocalórico em Compostos FeMnP0,45As0,55. In: XXVII Encontro Nacional de Física da matéria Condensada, 2004, Poços de Caldas. Livro de Resumos do XXVII ENFMC, 2004.

  • RANKE, P. J. V. ; OLIVEIRA, N. A. ; GAMA, S. ; CAMPOS, A. ; CARON, L. ; COELHO, A. . Theoretical Investigations on Giant Magnetocaloric Effect in MnFeP0.45As0.55. In: XXVII Encontro Nacional de Física da Matéria Condensada, 2004, Poços de Caldas. Anais do XXVII Encontro Nacional de Física da Matéria Condensada, 2004.

  • CARON, L. ; CAMPOS, A. ; GAMA, S. . Estudo do efeito Magnetocalórico em Compostos FeMnP0,45As0,55. In: 2nd Brazilian MRS Meeting, 2003, Rio de Janeiro. Livro de Resumos II Encontro do SBPMat, 2003.

  • CARON, L. ; CAMPOS, A. ; TRAVA, B. U. ; COELHO, A. ; GAMA, S. . Estudo do Efeito Magnetocalórico em Compostos FeMnP0,45As0,55. In: XXVI Encontro Nacional de Física da Matéria Condensada, 2003, Caxambu. Anais do XXVI Encontro Nacional de Física da Matéria Condensada, 2003.

  • CARON, L. ; CAMPOS, A. ; TRAVA, B. U. ; COELHO, A. ; GAMA, S. . Estudo do efeito Magnetocalórico em Compostos FeMnP0,45As0,55. In: IX Encontro de Jovens Pesquisadores, 2003, Campinas. Livro de Resumos IX Encontro de Jovens Pesquisadores, 2003.

  • Caron, L. . Probing the magnetoelastic coupling in magnetocaloric materials under hydrostatic pressure. 2015. (Apresentação de Trabalho/Seminário).

  • Caron, L. . Transition-metal based materials for magnetocaloric applications. 2014. (Apresentação de Trabalho/Seminário).

  • Caron, L. . 3d-metal based materials for magnetocaloric cooling. 2014. (Apresentação de Trabalho/Seminário).

  • Caron, L. . Magnetocaloric effect around order-order transitions. 2014. (Apresentação de Trabalho/Simpósio).

  • Caron, L. . The Inverse Magnetocaloric Effect in Mn2Sb-based Compounds. 2013. (Apresentação de Trabalho/Seminário).

  • Caron, L. . Transition metal based magnetocaloric materials for cooling applications. 2013. (Apresentação de Trabalho/Seminário).

  • Caron, L. . Transition metal-based refrigerants for room-temperature applications. 2011. (Apresentação de Trabalho/Seminário).

  • Caron, L. . Magnetocaloric Materials: Challenges & Applications. 2011. (Apresentação de Trabalho/Seminário).

Projetos de pesquisa

  • 2021 - 2024

    DiProMag - Digitalisation of a process chain for the production, characterisation and prototypical application of magnetocaloric alloys, Descrição: The entire air conditioning technology, but also current and future key technologies such as artificial intelligence or quantum computers, are unthinkable without heating and, above all, cooling devices. This applies to Germany, but to an even greater extent to the USA, China and India. For reducing the associated CO2 emissions alternative cooling and heating concepts that require less energy and use environmentally friendly materials are of great importance. With those considered in this project, so-called magnetocaloric materials should succeed in technical innovations that contribute to energy-saving and environmentally friendly refrigeration - from private households to industrial use. The cooling is based on a conversion of the crystalline structure of the materials that can be controlled by a magnetic field, during which energy is released or is saved. This process can replace the classic cooling by compression and expansion in compressors, often using environmentally harmful refrigerants. Together with the industrial partner Miele, the entire process chain from the experimental production and characterization of the magnetocaloric materials to their theoretical description can be implemented up to the construction of a demonstrator and digitized throughout. Digitization is based on a new approach to the scalable development of extensive ontologies, that digitally represent all process data and intentions. Using a special process, these structured and unstructured data are used to train a high-dimensional data space to gain completely digital new knowledge about material-physical relationships via analogy inferences. The long-term goal is to build a digital data base for magnetocaloric material and its use for the discovery and development of better material properties in order to make progress faster, more effective and more cost-effective in the future.. , Situação: Concluído; Natureza: Pesquisa. , Integrantes: Luana Caron - Coordenador / ENNEN, INGA - Integrante / Andreas Hütten - Integrante / Reiss, Günter - Integrante / Ell, Basil - Integrante / Cimiano, Philipp - Integrante / Schröder, Christian - Integrante / Schöning, Sonja - Integrante.

  • 2019 - 2021

    Kompetenzzentrum Magnetsensorik (MagSens), Descrição: We are dedicated to research for and development of new magnetic sensor systems that can measure position and angle of moving parts, mechanical stress and many other quantities you want to detect. We offer an exceptional and stimulating research environment for tailoring the sensing systems to meet the requirements of magnetic sensors' applications in automatisation, automotive, Industry 4.0 or biotechnology.. , Situação: Concluído; Natureza: Pesquisa. , Integrantes: Luana Caron - Coordenador / Reiss, Günter - Integrante / Klaui, Matthias - Integrante., Financiador(es): Bundesministeriur fur Bildung und Forschung - Outra.

  • 2003 - 2008

    Estudo do efeito magnetocalórico em compostos derivados da fase Mn2a, a=N, P, As, Sb e Bi, Projeto certificado pelo(a) coordenador(a) Sergio Gama em 08/11/2015., Descrição: O efeito magnetocalórico corresponde ao aumento de temperatura quando um corpo magneticamente ordenado é submetido adiabaticamente a um campo magnético e pode ser medido também pela variação isotérmica de entropia que ocorre quando o corpo é submetido ou subtraído de um campo magnético. O efeito é mais intenso nas vizinhanças da transição de fase magnética, ou seja, ao redor da temperatura de Curie. Diversos materiais apresentam o efeito, tanto elementos quanto compostos intermetálicos. De grande interesse são os materiais que apresentam transições magnéticas de primeira ordem, em geral acopladas a transições estruturais. Dentre estes, destacam-se os compostos do tipo FeMnP0,45As0,55, para os quais o efeito magnetocalórico é gigante e que apresentam temperatura de Curie ao redor de 300 K, e cuja temperatura de transição pode ser sintonizada em um largo intervalo de temperaturas variando-se a proporção P/As. O presente projeto de doutoramento propõe a síntese destes compostos e de outros baseados na fase Mn2A, com A = N, P, As, Sb e Bi, além de substituição de Mn por Fe, Co, Ni e Cr, e sua caracterização estrutural utilizando metalografia e difração de raios X, e magnética e magnetocalórica, utilizando magnetômetro SQUID e calorímetro com campo magnético (sistema PPMS). Propõe-se também o desenvolvimento de modelo teórico fenomenológico e de magnetismo itinerante para analisar os dados experimentais.. , Situação: Concluído; Natureza: Pesquisa. , Alunos envolvidos: Doutorado: (1) . , Integrantes: Luana Caron - Integrante / Sérgio Gama - Coordenador., Financiador(es): Fundação de Amparo à Pesquisa do Estado de São Paulo - Bolsa., Número de produções C, T & A: 19

  • 2002 - 2003

    Estudo do efeito magnetocalórico em compostos FeMnP0,45As0,55, Projeto certificado pelo(a) coordenador(a) Sergio Gama em 08/11/2015., Descrição: O efeito magnetocalórico corresponde ao aumento de temperatura quando um corpo magneticamente ordenado é submetido adiabaticamente a um campo magnético. O efeito é reversível, ou seja, corresponde também ao abaixamento de temperatura quando o corpo é retirado do campo. O efeito pode ser medido também pela variação isotérmica de entropia que ocorre quando o corpo é submetido ou subtraído de um campo magnético. O efeito é mais intenso nas vizinhanças da transição de fase magnética, ou seja, ao redor da temperatura de Curie. Diversos materiais apresentam o efeito, tanto elementos quanto compostos intermetálicos. De grande interesse são os materiais que apresentam transições magnéticas de primeira ordem, em geral acopladas a transições estruturais. Dentre estes, destacam-se os compostos do tipo FeMnP0,45As0,55, para os quais o efeito magnetocalórico é gigante e que apresentam temperatura de Curie ao redor de 300 K. O presente projeto de iniciação propõe a síntese deste composto através da técnica de encapsulamento em cadinho de nióbio e subsequente tratamentos térmicos, e sua caracterização estrutural (utilizando metalografia e difração de raios X) e magnética e magnetocalórica (utilizando magnetômetro SQUID).. , Situação: Concluído; Natureza: Pesquisa. , Alunos envolvidos: Graduação: (1) . , Integrantes: Luana Caron - Integrante / Sérgio Gama - Coordenador., Financiador(es): Fundação de Amparo à Pesquisa do Estado de São Paulo - Bolsa., Número de produções C, T & A: 10

Histórico profissional

Endereço profissional

  • Universität Bielefeld. , Universitätstrasse 25, Wellensiek, 33615 - Bielefeld, - Alemanha, Telefone: (0521) 1065420, URL da Homepage:

Experiência profissional

2018 - Atual

Bielefeld University

Vínculo: Servidor público, Enquadramento Funcional: Junior Professor

2018 - Atual

Helmholtz-Zentrum Berlin

Vínculo: Servidor público, Enquadramento Funcional: Junior Professor

2015 - 2017

Max-Planck-Institut für Chemische Physik fester Stoffe

Vínculo: Servidor público, Enquadramento Funcional: pós doutorando, Carga horária: 40, Regime: Dedicação exclusiva.

Atividades

  • 02/2015 - 08/2017

    Pesquisa e desenvolvimento, Solid State Chemistry.Linhas de pesquisa

2012 - 2015

Delft University of Technology

Vínculo: Servidor público, Enquadramento Funcional: Pós doutorando, Carga horária: 38, Regime: Dedicação exclusiva.

2008 - 2011

Delft University of Technology

Vínculo: Servidor público, Enquadramento Funcional: Pós doutorando, Carga horária: 38, Regime: Dedicação exclusiva.

Atividades

  • 05/2012 - 01/2015

    Pesquisa e desenvolvimento, TNW - Fundamental Aspects of Materials and Energy.Linhas de pesquisa

  • 04/2008 - 04/2011

    Pesquisa e desenvolvimento, TNW - Fundamental Aspects of Materials and Energy.Linhas de pesquisa

  • 04/2009 - 06/2009

    Ensino, Natuurkunde, Nível: GraduaçãoDisciplinas ministradas, TN1603 Propedeutisch eindproject (primeiro contato com trabalho experimental de alunos da física aplicada, consiste em realizar e apresentar um projeto experimental e.g. preparação e caracterização de amostras)

2011 - 2012

Uppsala Universitet

Vínculo: Servidor público, Enquadramento Funcional: Pós doutorando, Carga horária: 40, Regime: Dedicação exclusiva.

Atividades

  • 05/2011 - 04/2012

    Pesquisa e desenvolvimento, Department of Engineering Sciences.Linhas de pesquisa

2004 - 2008

Universidade Estadual de Campinas

Vínculo: Bolsista, Enquadramento Funcional: Bolsista FAPESP - Doutorado Direto

2002 - 2003

Universidade Estadual de Campinas

Vínculo: Bolsista, Enquadramento Funcional: Bolsista FAPESP - Iniciação Científica

Atividades

  • 03/2004 - 04/2008

    Pesquisa e desenvolvimento, Instituto de Física Gleb Wataghin, Departamento de Física Aplicada.Linhas de pesquisa

  • 08/2005 - 12/2005

    Ensino, Física, Nível: GraduaçãoDisciplinas ministradas, Física Experimental II (F229)

  • 07/2002 - 12/2003

    Pesquisa e desenvolvimento, Instituto de Física Gleb Wataghin, Departamento de Física Aplicada.Linhas de pesquisa

2007 - 2007

Universiteit van Amsterdam, UvA

Vínculo: Bolsista, Enquadramento Funcional: Bolsista CAPES - doutorado sanduíche

Atividades

  • 03/2007 - 08/2007

    Pesquisa e desenvolvimento, Van der Waals Zeeman Instituut.Linhas de pesquisa