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Anisotropic Metamagnetic Spin Reorientation and Rotational Magnetocaloric Effect of Single Crystal NdAlGe

Magnetic anisotropy strongly influences the performance of the magnetocaloric effect. We investigated the magnetocaloric properties of the NdAlGe single crystal with I4(1)md structure. The temperature-dependent magnetization revealed significant anisotropic properties; stable antiferromagnetic trans...

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Autores principales: Cho, Keunki, Shon, Wonhyuk, Bae, Jaehan, Lee, Jaewoong, Yoon, Seungha, Kim, Jinhee, Rhyee, Jong-Soo, Cho, Beongki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095856/
https://www.ncbi.nlm.nih.gov/pubmed/37049065
http://dx.doi.org/10.3390/ma16072771
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author Cho, Keunki
Shon, Wonhyuk
Bae, Jaehan
Lee, Jaewoong
Yoon, Seungha
Kim, Jinhee
Rhyee, Jong-Soo
Cho, Beongki
author_facet Cho, Keunki
Shon, Wonhyuk
Bae, Jaehan
Lee, Jaewoong
Yoon, Seungha
Kim, Jinhee
Rhyee, Jong-Soo
Cho, Beongki
author_sort Cho, Keunki
collection PubMed
description Magnetic anisotropy strongly influences the performance of the magnetocaloric effect. We investigated the magnetocaloric properties of the NdAlGe single crystal with I4(1)md structure. The temperature-dependent magnetization revealed significant anisotropic properties; stable antiferromagnetic transition at T(N) = 6 K for H//a and meta-magnetic spin reorientation at low temperature (T ≤ 5 K) within an intermediate field (H = 2 T) for H//c. During the metamagnetic spin reorientation, the abrupt change of the magnetic entropy leads to a significant magnetocaloric effect with negative magnetic entropy change (∆S(M)) by −13.80 J kg(−1) K(−1) at T(C) = 5.5 K for H = 5 T along the H//c axis. In addition, the antiferromagnetic state for H//a shows the inverse magnetocaloric effect(I-MCE) by positive entropy change ∆S(M) = 2.64 J kg(−1) K(−1) at T(N) = 6 K for H = 5 T. This giant MCE accompanied by the metamagnetic transition resulted in a significantly large relative cooling power (158 J/kg at H = 5 T) for H//c. The giant MCE and I-MCE can be applied to the rotational magnetocaloric effect (R-MCE) depending on the crystal orientations. NdAlGe exhibits rotational entropy change ∆S(c−a) = −12.85 J kg(−1) K at T(peak) = 7.5 K, H = 5 T. With comparison to conventional MCE materials, NdAlGe is suggested as promising candidate of R-MCE, which is a novel type of magnetic refrigeration system.
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spelling pubmed-100958562023-04-13 Anisotropic Metamagnetic Spin Reorientation and Rotational Magnetocaloric Effect of Single Crystal NdAlGe Cho, Keunki Shon, Wonhyuk Bae, Jaehan Lee, Jaewoong Yoon, Seungha Kim, Jinhee Rhyee, Jong-Soo Cho, Beongki Materials (Basel) Article Magnetic anisotropy strongly influences the performance of the magnetocaloric effect. We investigated the magnetocaloric properties of the NdAlGe single crystal with I4(1)md structure. The temperature-dependent magnetization revealed significant anisotropic properties; stable antiferromagnetic transition at T(N) = 6 K for H//a and meta-magnetic spin reorientation at low temperature (T ≤ 5 K) within an intermediate field (H = 2 T) for H//c. During the metamagnetic spin reorientation, the abrupt change of the magnetic entropy leads to a significant magnetocaloric effect with negative magnetic entropy change (∆S(M)) by −13.80 J kg(−1) K(−1) at T(C) = 5.5 K for H = 5 T along the H//c axis. In addition, the antiferromagnetic state for H//a shows the inverse magnetocaloric effect(I-MCE) by positive entropy change ∆S(M) = 2.64 J kg(−1) K(−1) at T(N) = 6 K for H = 5 T. This giant MCE accompanied by the metamagnetic transition resulted in a significantly large relative cooling power (158 J/kg at H = 5 T) for H//c. The giant MCE and I-MCE can be applied to the rotational magnetocaloric effect (R-MCE) depending on the crystal orientations. NdAlGe exhibits rotational entropy change ∆S(c−a) = −12.85 J kg(−1) K at T(peak) = 7.5 K, H = 5 T. With comparison to conventional MCE materials, NdAlGe is suggested as promising candidate of R-MCE, which is a novel type of magnetic refrigeration system. MDPI 2023-03-30 /pmc/articles/PMC10095856/ /pubmed/37049065 http://dx.doi.org/10.3390/ma16072771 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cho, Keunki
Shon, Wonhyuk
Bae, Jaehan
Lee, Jaewoong
Yoon, Seungha
Kim, Jinhee
Rhyee, Jong-Soo
Cho, Beongki
Anisotropic Metamagnetic Spin Reorientation and Rotational Magnetocaloric Effect of Single Crystal NdAlGe
title Anisotropic Metamagnetic Spin Reorientation and Rotational Magnetocaloric Effect of Single Crystal NdAlGe
title_full Anisotropic Metamagnetic Spin Reorientation and Rotational Magnetocaloric Effect of Single Crystal NdAlGe
title_fullStr Anisotropic Metamagnetic Spin Reorientation and Rotational Magnetocaloric Effect of Single Crystal NdAlGe
title_full_unstemmed Anisotropic Metamagnetic Spin Reorientation and Rotational Magnetocaloric Effect of Single Crystal NdAlGe
title_short Anisotropic Metamagnetic Spin Reorientation and Rotational Magnetocaloric Effect of Single Crystal NdAlGe
title_sort anisotropic metamagnetic spin reorientation and rotational magnetocaloric effect of single crystal ndalge
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095856/
https://www.ncbi.nlm.nih.gov/pubmed/37049065
http://dx.doi.org/10.3390/ma16072771
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