Cs2NaAl1-xCrxF6 : a family of compounds presenting magnetocaloric effect
S. S. Pedro, J. C. G. Tedesco, F. Yokaichiya, P. Brandão, A. M. Gomes, S. Landsgesell, M. J. M. Pires, L. P. Sosman, A. M. Mansanares, M. S. Reis and H. N. Bordallo
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Agradecimentos: We thank Pedro von Ranke (UERJ, Brazil) and Walter Kalceff (UTS, Australia) for fruitful discussions. J.C.G.T.’s participation in this work was financed by the Science without Borders Program. Access to CICECO/Chemistry Department (Aveiro, Portugal), GPMR-UNICAMP (Campinas, Brazil),...
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Agradecimentos: We thank Pedro von Ranke (UERJ, Brazil) and Walter Kalceff (UTS, Australia) for fruitful discussions. J.C.G.T.’s participation in this work was financed by the Science without Borders Program. Access to CICECO/Chemistry Department (Aveiro, Portugal), GPMR-UNICAMP (Campinas, Brazil), LMBT- UFF (Niter'oi, Brazil), LBT-UFRJ (Rio de Janeiro, Brazil), BERII facilities, and LaMMB MagLab (Berlin, Germany) are gratefully acknowledged by all authors. Financial support was provided by Proppi/UFF, FAPERJ, FAPESP, CAPES, CNPq, and FINEP
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Abstract: In this paper we explore the magnetocaloric effect (MCE) of chromium-doped elpasolite Cs2NaAl1-x,CrxF6 (x = 0.01 and 0.62) single crystals. Magnetization and heat capacity data show the magnetocaloric potentials to be comparable to those of garnets, perovskites, and other fluorides,...
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Abstract: In this paper we explore the magnetocaloric effect (MCE) of chromium-doped elpasolite Cs2NaAl1-x,CrxF6 (x = 0.01 and 0.62) single crystals. Magnetization and heat capacity data show the magnetocaloric potentials to be comparable to those of garnets, perovskites, and other fluorides, producing magnetic entropy changes of 0.5 J/kg K (x = 0.01) and 11 J/kg K (x = 0.62), and corresponding adiabatic temperature changes of 4 and 8 K, respectively. These values are for a magnetic field change of 50 kOe at a temperature around 3 K. A clear Schottky anomaly below 10 K, which becomes more apparent when an external magnetic field is applied, was observed and related to the splitting of the Cr3+ energy levels. These results hint at a new family of materials with potential wide use in cryorefrigeration
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FUNDAÇÃO CARLOS CHAGAS FILHO DE AMPARO À PESQUISA DO ESTADO DO RIO DE JANEIRO - FAPERJ
FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULO - FAPESP
COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL DE NÍVEL SUPERIOR - CAPES
CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICO - CNPQ
FINANCIADORA DE ESTUDOS E PROJETOS - FINEP
Aberto
Cs2NaAl1-xCrxF6 : a family of compounds presenting magnetocaloric effect
S. S. Pedro, J. C. G. Tedesco, F. Yokaichiya, P. Brandão, A. M. Gomes, S. Landsgesell, M. J. M. Pires, L. P. Sosman, A. M. Mansanares, M. S. Reis and H. N. Bordallo
Cs2NaAl1-xCrxF6 : a family of compounds presenting magnetocaloric effect
S. S. Pedro, J. C. G. Tedesco, F. Yokaichiya, P. Brandão, A. M. Gomes, S. Landsgesell, M. J. M. Pires, L. P. Sosman, A. M. Mansanares, M. S. Reis and H. N. Bordallo
Fontes
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Physical review. B, Condensed matter and materials physics (Fonte avulsa) |