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Designing gadolinium-transition metals-based perovskite type high entropy oxides with good cryogenic magnetocaloric performances Journal article
Lin Junli, Wang Xin, Chen Fengying, LI HAIFENG, Li Lingwei. Designing gadolinium-transition metals-based perovskite type high entropy oxides with good cryogenic magnetocaloric performances[J]. Journal of Materials Science & Technology, 2025, 207, 317-323.
Authors:  Lin Junli;  Wang Xin;  Chen Fengying;  LI HAIFENG;  Li Lingwei
Favorite | TC[Scopus]:29  IF:11.2/10.4 | Submit date:2024/08/15
High Entropy Oxidestransition Metalmagnetocaloric Propertiescryogenic Magnetic Refrigeration  
Structural, magnetic, and magnetocaloric characterizations of geometrically-frustrated SrRE2O4 (RE = Gd, Dy, Ho, Er) oxides for low-temperature cooling applications Journal article
Lin, Junli, Wu, Si, Sun, Kaitong, Li, Hai Feng, Chen, Wang, Zhang, Yikun, Li, Lingwei. Structural, magnetic, and magnetocaloric characterizations of geometrically-frustrated SrRE2O4 (RE = Gd, Dy, Ho, Er) oxides for low-temperature cooling applications[J]. Ceramics International, 2024.
Authors:  Lin, Junli;  Wu, Si;  Sun, Kaitong;  Li, Hai Feng;  Chen, Wang; et al.
Favorite | TC[Scopus]:0  IF:5.1/4.7 | Submit date:2024/11/05
Geometrically Frustration  Low-temperature Magnetic Cooling  Magnetocaloric (Mc) Effect  RaRe Earth (Re) Oxides  Srre2o4 Compounds  
Geometrically frustrated Gd2Ti2O7 oxide: A comprehensive exploration of structural, magnetic, and magnetocaloric properties for cryogenic magnetic cooling applications Journal article
Zhang, Yikun, Hao, Weixiang, Lin, Junli, Li, Hai Feng, Li, Lingwei. Geometrically frustrated Gd2Ti2O7 oxide: A comprehensive exploration of structural, magnetic, and magnetocaloric properties for cryogenic magnetic cooling applications[J]. Acta Materialia, 2024, 272, 119946.
Authors:  Zhang, Yikun;  Hao, Weixiang;  Lin, Junli;  Li, Hai Feng;  Li, Lingwei
Favorite | TC[WOS]:38 TC[Scopus]:43  IF:8.3/9.3 | Submit date:2024/05/16
Geometrically Frustrated Magnetic Materials  Magnetic Phase Transition (Mpt)  Magnetocaloric Effect (Mce)  Rare Earths-transition Metal-based Materials  
Modulation of oxygen-etching for generating nickel single atoms for efficient electroreduction of CO2 to syngas (CO/H2) Journal article
Li, Jiwei, Xu, Junli, Zhao, Jia, Fang, Yixin, Du, Congcong, Ding, Xingyu, Ye, Jinyu, Sun, Yifei, Zhang, Kelvin H.L., Xie, Shunji, Huang, Jianyu, Salaev, Mikhail, Mamontov, Grigory, Ip, Weng Fai, Pan, Hui, Lin, Sen, Xiong, Haifeng. Modulation of oxygen-etching for generating nickel single atoms for efficient electroreduction of CO2 to syngas (CO/H2)[J]. Journal of Catalysis, 2023, 421, 332-341.
Authors:  Li, Jiwei;  Xu, Junli;  Zhao, Jia;  Fang, Yixin;  Du, Congcong; et al.
Favorite | TC[WOS]:13 TC[Scopus]:13  IF:6.5/7.0 | Submit date:2023/06/05
Electrochemical Reduction Of Co2  Ni Single-atom Catalyst  Oxygen Etching  Syngas (Co/h2)