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7篇 您的检索式:作者名="Ni Shibing"
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1Progress in aqueous rechargeable batteries显示文摘Over the past decades, a series of aqueous rechargeable batteries(ARBs) were explored, investigated and demonstrated. Among them,aqueous rechargeable alkali-metal ion(Li^+Na^+, K^+) batteries, aqueous rechargeable-metal ion(Zn^(2+),Mg^(2+), Ca^(2+), Al^(3+)) batteries and aqueous rechargeable hybrid batteries are standing out due to peculiar properties. In this review, we focus on the fundamental basics of these batteries, and discuss the scientific and/or technological achievements and challenges. By critically reviewing state-of-the-art technologies and the most promising results so far, we aim to analyze the benefits of ARBs and the critical issues to be addressed, and to promote better development of ARBs.Jilei Liu Chaohe Xu Zhen Chen Shibing Ni ZeXiang Shen 2018Green Energy & Environment2018,3,1:6
2Hydrothermal synthesis of Fe3O4 nanoparticles and its application in lithium ion battery显示文摘Ni Shibing Wang Xinghui Zhou Guo 2009Materials Letters2009,63,30:1
3Synthesis of Zn3 (OH)2V207 · nil2O hierarchical nanostructures and their photoluminescence properties 显示文摘Ni Shibing Zhou Guo Wang Xinghui 2010Mater Chem Phys2010,120,:1
4Fabrication of Cu2S on Cu film electrode and its application in lithium ion bat- tery显示文摘Shibing Ni Tao Li Xuelin Yang 2012Thin Solid Fihns2012,520,21:1
5Hydrothermal Synthesis and Microwave Absorption Properties of Fe3O4Nanocrystals显示文摘Ni Shibing Lin Shumei Pan Qingtao 2009Journal of Physics D:Applied Physics2009,42,05:1
6Oncogenic heterogeneous nuclear ribonucleoprotein D-like promotes the growth of human colon cancer SW620 cells via its regulation of cell-cycle显示文摘Pengshan Zhang Dehuan Ji Xiaohui Hu Hengli Ni Wenjuan Ma Xiuyan Zhang Shibing Liao Zheng Zeng Yun Zhao Haixia Zhou 2018Acta Biochimica et Biophysica Sinica2018,50,9:1
7Concise Strategies to Enhance the High-Rate Performance of Li_(3)VO_(4) Anodes:Cl Doping,Carbon Coating,and Spherical Architecture Design显示文摘The safe operating voltage and low volume variation of Li_(3)VO_(4)(LVO)make it an ideal anode material for lithium(Li)-ion batteries.However,the insufficient understanding of the inner storage mechanism hinders the design of LVO-based electrodes.Herein,we investigate,for the first time,the Li-ion storage activity in LVO via Cl doping.Moreover,N-doped C coating was simultaneously achieved in the Cl doping process,resulting in synergistically improved reaction kinetics.As a result,the as-prepared Cl-doped Li_(3)VO_(4) coated with N-doped C(Cl-LVO@NC)electrodes deliver a discharge capacity of 884.1 mAh/g after 200 cycles at 0.2 A/g,which is the highest among all of the LVO-based electrodes.The Cl-LVO@NC electrodes also exhibit high-capacity retention of 331.1 mAh/g at 8.0 A/g and full capacity recovery after 5 periods of rate testing over 400 cycles.After 5000 cycles at 4.0 A/g,the discharge capacity can be maintained at 423.2 mAh/g,which is superior to most LVO-based electrodes.The Li-ion storage activity in LVO via Cl doping and significant improvement in the high-rate Li-ion storage reported in this work can be used as references for the design of advanced LVO-based electrodes for high-power applications.Zongping Zhang Jie Xu Dongmei Zhang Huijuan Ma Tao Li Ting Xiao Cunyuan Pei Shibing Ni 2023Transactions of Tianjin University2023,29,2:0
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