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2篇 您的检索式:作者名="Dai Huiya"
    题名 作者 年代 出处 被引量
1The combination stretching function technique with simulated annealing algorithm for global optimization显示文摘He Junqi Dai Huiya Song Xueli 2014Optimization Methods and Software2014,29,3:1
2In-situ construction of a thermodynamically stabilized interface on the surface of single crystalline Ni-rich cathode materials via a onestep molten-salt route显示文摘Nickel rich LiNi_(x)Co_(y)Mn_(1−x−y)O_(2)cathode materials have been studied extensively to increase the energy density of lithium-ion batteries(LIBs)due to their advantages of high capacity and low cost.However,the anisotropic crystal expansion and contraction inside the secondary particles would cause detrimental micro-cracks and severe parasitic reactions at the electrode/electrolyte interface during cycling,which severely decreases the stability of crystalline structure and cathodeelectrolyte interphase and ultimately affects the calendar life of batteries.Herein,a thermodynamically stabilized interface is constructed on the surface of single-crystalline Ni-rich cathode materials(SC811@RS)via a facile molten-salt route to suppress the generation of microcracks and interfacial parasitic side reactions simultaneously.Density functional theory calculations show that the formation energy of interface layer(−1.958 eV)is more negative than that of bulk layered structure(−1.421 eV).Such a thermodynamically stable protective layer can not only prevent the direct contact between highly reactive LiNi_(x)Co_(y)Mn_(1−x−y)O_(2)and electrolyte,but also mitigate deformation of structure caused by stress thus strengthening the mechanical properties.Raman spectra further confirm the excellent structural reversibility and reaction homogeneity of SC811@RS at particle,electrode,time scales.Consequently,SC811@RS cathode material delivers significantly improved cycling stability(high capacity retention of 92%after 200 cycles at 0.5 C)compared with polycrystalline LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)(82%).Huiya Yang Xiangbang Kong Jiyang Li Pengpeng Dai Jing Zeng Yang Yang Jinbao Zhao 2023Nano Research2023,16,5:0
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