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Laser/Electron Beam Processing of As-cast Nd_2Fe_(14)B Alloy
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作者 胡建东 张绪军 石朱生 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1990年第6期435-438,共4页
It was found that the free Fe in the melted zone of the as—cast Nd_2Fe_(14)B alloy could be dissolved by Iaser/electron beam.The growth direction of Nd_2Fe_(14)B grains is nearly perpendicular to the sur- face of the... It was found that the free Fe in the melted zone of the as—cast Nd_2Fe_(14)B alloy could be dissolved by Iaser/electron beam.The growth direction of Nd_2Fe_(14)B grains is nearly perpendicular to the sur- face of the samples.EDX examination showed that Fe element was homogeneously distributed in the melted zone.Results presented in this paper have giv- en hint to remove free Fe in as—cast Nd_2Fe_(14)B alloy. 展开更多
关键词 Nd-Fe-B alloy laser/electron beam processing
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Activating AIN thin film by introducing Co nanoparticles as a new anode material for thin-film lithium batteries 被引量:4
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作者 Zhong Yan Xiao-Ye Niu +3 位作者 Xiao-Qin Du Qin-Chao Wang Xiao-Jing Wu Yong-Ning Zhou 《Rare Metals》 SCIE EI CAS CSCD 2018年第8期625-632,共8页
A1N/Co nanocomposite thin films were fabricated by pulsed laser deposition and investigated as new anode materials for lithium-ion batteries for the first time. The combination of electrochemically inactive A1N and Co... A1N/Co nanocomposite thin films were fabricated by pulsed laser deposition and investigated as new anode materials for lithium-ion batteries for the first time. The combination of electrochemically inactive A1N and Co in nanometer scale boosted the electrochemical performance of the thin films surprisingly. A high reversible capacity of 555 mAh.g^-1 after 100 discharge-charge cycles at a current density of 500 mA.g^-1 is obtained for the A1N/Co nanocomposite thin films, and 372 mAh.g^-1 can be retained at a high rate up to 16C, exhibiting promising cycle stability and rate capability. The electrochemical reaction mechanism study reveals that Co nanoparticles could not only provide high electronic conductivity for the thin films, which facilitate the thorough decomposition of A1N in the initial discharge process, but also react with Li3N to form a new species CozN during charge process, thus ensuring large capacity and high reversibility of A1N/Co nanocomposite thin films in sub- sequent cycles. This study provides a new perspective to design advanced electrode materials for lithium-ion batteries. 展开更多
关键词 Lithium-ion battery Anode material THINFILM Aluminum nitride Pulsed laser deposition
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