Zonghao Song , Zheng Chen , Xucai Kan , Shouguo Wang , Meiling Wang , Ganhong Zheng , Yongqing Ma
{"title":"Magnetocaloric effect in kagome MgMn6Sn6","authors":"Zonghao Song , Zheng Chen , Xucai Kan , Shouguo Wang , Meiling Wang , Ganhong Zheng , Yongqing Ma","doi":"10.1016/j.mtphys.2024.101493","DOIUrl":null,"url":null,"abstract":"<div><p>We have studied magnetocaloric effect of kagome MgMn<sub>6</sub>Sn<sub>6</sub> single crystal. The MgMn<sub>6</sub>Sn<sub>6</sub> single crystal exhibits a typical transition of ferromagnetic (FM) to paramagnetic (PM). Maximum magnetic entropy change (<span><math><mrow><mo>−</mo><mo>Δ</mo><msubsup><mi>S</mi><mi>M</mi><mi>max</mi></msubsup></mrow></math></span>) and relative cooling power (RCP) for a field change of 0–50 kOe were calculated to be 3.05 J/kg K and 129 J/kg for <em>H</em>//ab, 2.76 J/kg K and 115 J/kg for <em>H</em>//c, respectively. Concurrently, around the phase transition temperature <em>T</em><sub><em>C</em></sub>, the scaling approach for MgMn<sub>6</sub>Sn<sub>6</sub> is used to study the magnetic entropy change <span><math><mrow><mo>[</mo><mrow><mo>Δ</mo><msub><mi>S</mi><mi>M</mi></msub><mrow><mo>(</mo><mrow><mi>T</mi><mo>,</mo><mi>H</mi></mrow><mo>)</mo></mrow></mrow><mo>]</mo></mrow></math></span>. The outcome suggests that, in the presence of high field, the curves of <span><math><mrow><mo>Δ</mo><msub><mi>S</mi><mi>M</mi></msub><mrow><mo>(</mo><mrow><mi>T</mi><mo>,</mo><mi>H</mi></mrow><mo>)</mo></mrow></mrow></math></span> can be effectively combined to form a single, universal curve that is unaffected by temperature or external fields. Nevertheless, under low field, <span><math><mrow><mo>Δ</mo><msub><mi>S</mi><mi>M</mi></msub><mrow><mo>(</mo><mrow><mi>T</mi><mo>,</mo><mi>H</mi></mrow><mo>)</mo></mrow></mrow></math></span> curves diverge slightly below <em>T</em><sub><em>C</em></sub>, indicating a first-order transition feature. According to the scaling analysis of <span><math><mrow><mo>Δ</mo><msub><mi>S</mi><mi>M</mi></msub><mrow><mo>(</mo><mrow><mi>T</mi><mo>,</mo><mi>H</mi></mrow><mo>)</mo></mrow></mrow></math></span> curves, the phase transition of MgMn<sub>6</sub>Sn<sub>6</sub> is forced into a second-order one under high field conditions, even if in the low field zone, it is a weak first-order type. Furthermore, it is discovered that the observed magnetocaloric effect (MCE) in kagome MgMn<sub>6</sub>Sn<sub>6</sub> could not be satisfactorily explained by a basic theoretical model that simply took into consideration the magnetoelastic and magneto electron coupling.</p></div>","PeriodicalId":18253,"journal":{"name":"Materials Today Physics","volume":null,"pages":null},"PeriodicalIF":10.0000,"publicationDate":"2024-06-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Materials Today Physics","FirstCategoryId":"88","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S254252932400169X","RegionNum":2,"RegionCategory":"材料科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"MATERIALS SCIENCE, MULTIDISCIPLINARY","Score":null,"Total":0}
引用次数: 0
Abstract
We have studied magnetocaloric effect of kagome MgMn6Sn6 single crystal. The MgMn6Sn6 single crystal exhibits a typical transition of ferromagnetic (FM) to paramagnetic (PM). Maximum magnetic entropy change () and relative cooling power (RCP) for a field change of 0–50 kOe were calculated to be 3.05 J/kg K and 129 J/kg for H//ab, 2.76 J/kg K and 115 J/kg for H//c, respectively. Concurrently, around the phase transition temperature TC, the scaling approach for MgMn6Sn6 is used to study the magnetic entropy change . The outcome suggests that, in the presence of high field, the curves of can be effectively combined to form a single, universal curve that is unaffected by temperature or external fields. Nevertheless, under low field, curves diverge slightly below TC, indicating a first-order transition feature. According to the scaling analysis of curves, the phase transition of MgMn6Sn6 is forced into a second-order one under high field conditions, even if in the low field zone, it is a weak first-order type. Furthermore, it is discovered that the observed magnetocaloric effect (MCE) in kagome MgMn6Sn6 could not be satisfactorily explained by a basic theoretical model that simply took into consideration the magnetoelastic and magneto electron coupling.
期刊介绍:
Materials Today Physics is a multi-disciplinary journal focused on the physics of materials, encompassing both the physical properties and materials synthesis. Operating at the interface of physics and materials science, this journal covers one of the largest and most dynamic fields within physical science. The forefront research in materials physics is driving advancements in new materials, uncovering new physics, and fostering novel applications at an unprecedented pace.