SELENIDES

作品数:59被引量:96H指数:6
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相关期刊:《npj Computational Materials》《Journal of Environmental Sciences》《Journal of Materials Science & Technology》《Acta Geologica Sinica(English Edition)》更多>>
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WSe_(2)/MoSe_(2)with a better-matched heterointerface dominating high-performance potassium/sodium storage
《Rare Metals》2025年第1期195-208,共14页Zhi-Yuan Song Yun-Dong Cao Lin-Lin Fan Jian Song Yi Feng Hong Liu Cai-Li Lv Guang-Gang Gao 
supported by the National Natural Science Foundation of China(No.22201098);the Natural Science Foundation of Shandong Province(Nos.ZR2021QB005 and ZR2021MB008);Jinan City“New University 20”Project(No.202228113).
Constructing a valid heterointerface with a built-in electric field is an effective strategy for designing energy storage anodes with exceptional efficiency for potassium-ion batteries(PIBs)and sodium-ion batteries(SI...
关键词:HETEROINTERFACE Metal selenides Potassium-ion batteries Sodium-ion batteries High-rate capability 
Rational design of metal selenides nanomaterials for alkali metal ion(Li^(+)/Na^(+)/K^(+))batteries:current status and perspectives被引量:2
《Rare Metals》2024年第5期1906-1931,共26页Rui Sun Feng Xu Cai-Hong Wang Sheng-Jun Lu Yu-Fei Zhang Hao-Sen Fan 
supported by the National Natural Science Foundation of China(Nos.51563002 and 52101243);the"100-level"Innovative Talents Project of Guizhou Province,China(No.[2016]5653);the Natural Science Foundation of Guangdong Province(No.2020A1515010886);the Science and Technology Planning Project of Guangzhou(No.202102010373)。
Recently,metal selenides have obtained widespread attention as electrode materials for alkali(Li^(+)/Na^(+)/K^(+))batteries due to their promising theoretical capacity and mechanism.Nevertheless,metal selenides,simila...
关键词:Rational design Metal selenides NANOSTRUCTURE Li^(+) batteries Na^(+) batteries K^(+) batteries 
Metal-organic framework(MOF)-derived selenidation strategy to prepare porous(Zn,Cu)CoSex micro/nanostructures for sodium-ion batteries被引量:6
《Rare Metals》2022年第12期4104-4115,共12页Ye-Mao Lin Hao-Sen Fan Cai-Zhen Zhu Jian Xu 
financially supported by the National Natural Science Foundation of China(No.51673117);the Science and Technology Innovation Commission of Shenzhen(No.JCYJ20150529164656097)
Owning to the wide distribution,low cost,and similar chemical-electrochemical properties with lithium,sodium-ion batteries(SIBs) have attracted much attention during recent years and may have the potential to replace ...
关键词:Metal selenides Prussian blue analogue Sodium-ion batteries Metal-organic frameworks(MOF) 
Rational design of heterostructured core-shell Co-Zn bimetallic selenides for improved sodium-ion storage被引量:2
《Rare Metals》2022年第10期3381-3390,共10页Hua-Jian Liang Xiao-Tong Li Wen-Zhi Zheng Zhi-Ting Liu Wei Yang Zi-Li Liu Yu-Fei Zhang Hao-Sen Fan Sheng-Jun Lu 
financially supported by the National Natural Science Foundation of China(Nos.52101243 and 51563002);the Natural Science Foundation of Guangdong Province(Nos.2020A1515010886 and 2021A1515010078);the Scientific and Technological Plan of Guangdong Province,China(No.2019B090905007);the Science and Technology Planning Project of Guangzhou(No.202102010373)。
Bimetallic selenide with core-shell structure(CoSe_(2)/ZnSe/NC@ZnSe/NC)has been successfully prepared through facile carbonization and selenization processes of its core-shell metal-organic framework precursors,in whi...
关键词:Co-Zn metal selenides Heterostructures Core-shell structure Sodium-ion battery(SIB) 
Enhancing point defect scattering in copper antimony selenides via Sm and S Co-doping被引量:3
《Rare Metals》2018年第4期290-299,共10页Tian-Hua Zou Wen-Jie Xie Marc Widenmeyer Xing-Xing Xiao Xiao-Yin Qin Anke Weidenkaff 
financially supported by the German Research Foundation within the DFG Priority Program SPP 1386 (No.WE 2803/2-2);Federal Ministry for Economics Affairs and Energy (BMWI)(No. Nr 19U15006F)
Doping- and alloying-induced point defects lead to mass and strain field fluctuations which can be used as effective strategies to decrease the lattice thermal conductivity and consequently boost the performance of th...
关键词:THERMOELECTRIC Point defect scatteringCu3SbSe4 Lattice thermal conductivity 
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