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01
Ni50Mn37.5Sn12.5 Heusler合金:Co掺入对其结构、马氏体转变和磁性特性的影响
Ni50Mn37.5Sn12.5 Heusler Alloy: Influence of Co Addition on the Structure, Martensitic Transition, and Magnetic Properties
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Bekhouche, A.; Alleg, S.; Dadda, K.; Costa, B.F.O.; Wederni, A.; Suñol, J.-J. Ni50Mn37.5Sn12.5 Heusler Alloy: Influence of Co Addition on the Structure, Martensitic Transition, and Magnetic Properties. Magnetochemistry 2024, 10, 59.
02
GdCo1.8M0.2化合物 (M为Fe, Mn, Cu, Al) 的能带结构计算、磁性及磁热效应
Band Structure Calculations, Magnetic Properties and Magnetocaloric Effect of GdCo1.8M0.2 Compounds with M = Fe, Mn, Cu, Al
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Souca, G.; Dudric, R.; Küpper, K.; Tiusan, C.; Tetean, R. Band Structure Calculations, Magnetic Properties and Magnetocaloric Effect of GdCo1.8M0.2 Compounds with M = Fe, Mn, Cu, Al. Magnetochemistry 2024, 10, 53.
03
具有高制冷能力的Nb修饰的La1.4Sr1.6Mn2−xNbxO7 (0.0 ≤ x ≤ 0.15) 层状钙钛矿
Evidence of a Large Refrigerant Capacity in Nb-Modified La1.4Sr1.6Mn2−xNbxO7 (0.0 ≤ x ≤ 0.15) Layered Perovskites
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Kumar, A.; Kim, J.W.; Sharma, M.K.; Kumari, K.; Vij, A.; Koo, B.H. Evidence of a Large Refrigerant Capacity in Nb-Modified La1.4Sr1.6Mn2−xNbxO7 (0.0 ≤ x ≤ 0.15) Layered Perovskites. Magnetochemistry 2024, 10, 22.
04
LaFe13−x−yMnxSiyH1.6与共晶液态GaInSn合金的兼容性
Compatibility of LaFe13−x−yMnxSiyH1.6 and Eutectic Liquid GaInSn Alloy
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Brechtl, J.; Rendall, J.; Zhang, M.; Koehler, M.R.; Nawaz, K.; Momen, A.M. Compatibility of LaFe13−x−yMnxSiyH1.6 and Eutectic Liquid GaInSn Alloy. Magnetochemistry 2024, 10, 13.
05
探索具有ThMn12型结构的富铁金属化合物合金的晶体结构、超精细参数和磁冷效应:结合实验与DFT计算的综合研究
Exploring Crystal Structure, Hyperfine Parameters, and Magnetocaloric Effect in Iron-Rich Intermetallic Alloy with ThMn12-Type Structure: A Comprehensive Investigation Using Experimental and DFT Calculation
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Horcheni, J.; Jaballah, H.; Dhahri, E.; Bessais, L. Exploring Crystal Structure, Hyperfine Parameters, and Magnetocaloric Effect in Iron-Rich Intermetallic Alloy with ThMn12-Type Structure: A Comprehensive Investigation Using Experimental and DFT Calculation. Magnetochemistry 2023, 9, 230.
06
通过调节嵌入钛氮化物薄膜中的铁纳米颗粒的尺寸依赖性磁冷效应来增强磁冷却效果
Enhanced Magnetic Cooling through Tailoring the Size-Dependent Magnetocaloric Effect of Iron Nanoparticles Embedded in Titanium Nitride Thin Films
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Sarkar, K.; Jordan, M.; Kebede, A.; Kriske, S.; Wise, F.; Kumar, D. Enhanced Magnetic Cooling through Tailoring the Size-Dependent Magnetocaloric Effect of Iron Nanoparticles Embedded in Titanium Nitride Thin Films. Magnetochemistry 2023, 9, 188.
07
纳米和多晶块体锰酸盐 La0.7Ba(0.3−x)CaxMnO3 (x ≤ 0.25) 的磁性和磁热效应
Magnetic and Magnetocaloric Properties of Nano- and Polycrystalline Bulk Manganites La0.7Ba(0.3−x)CaxMnO3 (x ≤ 0.25)
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Atanasov, R.; Brinza, E.; Bortnic, R.; Hirian, R.; Souca, G.; Barbu-Tudoran, L.; Deac, I.G. Magnetic and Magnetocaloric Properties of Nano- and Polycrystalline Bulk Manganites La0.7Ba(0.3−x)CaxMnO3 (x ≤ 0.25). Magnetochemistry 2023, 9, 170.
08
立方体R4PtAl (R为Ho和Er) 中的磁性与输运异常及其磁热效应
Magnetic and Transport Anomalies and Large Magnetocaloric Effect in Cubic R4PtAl (R = Ho and Er)
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Iyer, K.K.; Rayaprol, S.; Kumar, R.; Matteppanavar, S.; Dodamani, S.; Maiti, K.; Sampathkumaran, E.V. Magnetic and Transport Anomalies and Large Magnetocaloric Effect in Cubic R4PtAl (R = Ho and Er). Magnetochemistry 2023, 9, 85.
09
FeNi二元合金中无滞回效应的铁磁特性及显著的磁热效应参数证据
Evidence of Hysteresis Free Ferromagnetic Nature and Significant Magnetocaloric Parameters in FeNi Binary Alloy
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Sharma, M.K.; Kumar, A.; Kumari, K.; Park, S.-J.; Yadav, N.; Huh, S.-H.; Koo, B.-H. Evidence of Hysteresis Free Ferromagnetic Nature and Significant Magnetocaloric Parameters in FeNi Binary Alloy. Magnetochemistry 2023, 9, 8.
10
熔体纺丝Ni51.82Mn32.37In15.81的微观结构、临界行为和磁热效应
Microstructure, Critical Behavior and Magnetocaloric Properties of Melt-Spun Ni51.82Mn32.37In15.81
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Dadda, K.; Alleg, S.; Souilah, S.; Daza, J.; Saurina, J.; Suñol, J.-J.; Bessais, L.; Hlil, E.-K. Microstructure, Critical Behavior and Magnetocaloric Properties of Melt-Spun Ni51.82Mn32.37In15.81. Magnetochemistry 2022, 8, 179.
11
金属氧化物相对La0.7Ca0.3MnO3-MO (MO为CuO、CoO和NiO) 复合材料的磁性和磁热效应的影响
Effect of Metal-Oxide Phase on the Magnetic and Magnetocaloric Properties of La0.7Ca0.3MnO3-MO (MO=CuO, CoO, and NiO) Composite
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Dhungana, S.; Casey, J.; Neupane, D.; Pathak, A.K.; Karna, S.; Mishra, S.R. Effect of Metal-Oxide Phase on the Magnetic and Magnetocaloric Properties of La0.7Ca0.3MnO3-MO (MO=CuO, CoO, and NiO) Composite. Magnetochemistry 2022, 8, 163.
12
单向Ni–Mn–Sn Heusler合金中的马氏体转变、磁性和机械特性
Martensitic Transformation, Magnetic and Mechanical Characteristics in Unidirectional Ni–Mn–Sn Heusler Alloy
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Sun, H.; Jing, C.; Zeng, H.; Su, Y.; Yang, S.; Zhang, Y.; Bachagha, T.; Zhou, T.; Hou, L.; Ren, W. Martensitic Transformation, Magnetic and Mechanical Characteristics in Unidirectional Ni–Mn–Sn Heusler Alloy. Magnetochemistry 2022, 8, 136.
13
四水氢马来酸镍(II)的磁热效应实验研究——一种具有铁磁相互作用的自旋-1空间各向异性平方晶格
Experimental Study of Magnetocaloric Effect in Tetraaquabis(Hydrogen Maleato)Nickel(II), [Ni(C4H3O4)2(H2O)4]—A Potential Realization of a Spin-1 Spatially Anisotropic Square Lattice with Ferromagnetic Interactions
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Danylchenko, P.; Tarasenko, R.; Čižmár, E.; Tkáč, V.; Uhrinová, A.; Orendáčová, A.; Orendáč, M. Experimental Study of Magnetocaloric Effect in Tetraaquabis(Hydrogen Maleato)Nickel(II), [Ni(C4H3O4)2(H2O)4]—A Potential Realization of a Spin-1 Spatially Anisotropic Square Lattice with Ferromagnetic Interactions. Magnetochemistry 2022, 8, 106.
14
Ni(en)(H2O)4·2H2O中的巨型旋转磁热效应:实验与理论
Giant Rotational Magnetocaloric Effect in Ni(en)(H2O)4·2H2O: Experiment and Theory
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Danylchenko, P.; Tarasenko, R.; Čižmár, E.; Tkáč, V.; Feher, A.; Orendáčová, A.; Orendáč, M. Giant Rotational Magnetocaloric Effect in Ni(en)(H2O)4·2H2O: Experiment and Theory. Magnetochemistry 2022, 8, 39.
15
化学取代和轻元素掺入对纳米晶Pr2Co7化合物磁性影响的研究
Influence of Chemical Substitution and Light Element Insertion on the Magnetic Properties of Nanocrystalline Pr2Co7 Compound
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Fersi, R.; Mliki, N.; Bessais, L. Influence of Chemical Substitution and Light Element Insertion on the Magnetic Properties of Nanocrystalline Pr2Co7 Compound. Magnetochemistry 2022, 8, 20.
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