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中图分类号:TM911 文献标志码:A Simulation research of heat dissipation structure for automotive lithium-ion battery packs CHENG Yun1... Center of High Performance Battery Materials and Devices in Shenzhen, Research Institute of Central South University in Shenzhen, Shenzhen 518057, China) Abstract: Due to the heat dissipation problem......
the development of solid state Li ion batteries [J]. Journal of the Electrochemical Society, 2017, 164(7): A1731-A1744. DOI: 10.1149/2.1571707jes. [2] EL KHARBACHI A, ZAVOROTYNSKA O, LATROCHE M, CUEVAS F... J. Cent. South Univ. (2020) 27: 3239-3248 DOI: https://doi.org/10.1007/s11771-020-4543-3 Process for recycle of spent lithium iron phosphate battery via a selective leaching-precipitation method LI......
Graphene-encapsulated blackberry-like porous silicon nanospheres prepared by modest magnesiothermic reduction for high-performance lithium-ion battery anodeBen Xiang1,Wei-Li An2,Ji-Jiang Fu1,Shi-Xiong Mei1,Si-Guang Guo1,Xu-Ming Zhang1,Biao Gao1,3,Paul K.Chu3,4,51. The State Key Laboratory of Refractories and Metallurgy,Institute of Advanced Materials and Nanotechnology,Wuhan University of Science......
锂动力电池LiFePO4电极的加速寿命王罗英1,李建玲1,高飞1,王新东1,赵淑红2,王子冬2(1.北京市北京科技大学 冶金与生态工程学院2.中国北方车辆研究所,北京 100072)摘 要:采用LiFePO4商业电池的正电极组装成扣式电池,以温度和放电倍率为加速因子进行加速寿命循环试验.结果表明,寿命循环前期的扣式电池,容量和功率均出现先增加后衰减的变化规律.高温加速了电化学过程,但对锂离子扩散系数影响不大.大倍率放电,使电极的极化加强,加速了电池老化.关键词:电池材料; 锂动力电池; LiFeP......
to the synergistic effects of MoP nanoparticles and conductive carbon network.This design strategy shows MoP@NDC electrode with applicable application as anode in lithium-ion battery.关键词:......
: Carbon/LiMn2O4 aqueous system[J]. Electrochem Commun, 2005, 7: 1138-1142. [8] Wang G X, Zhang B L, Yu Z L, et al. Mangaese oxide/MWNTs composite electrodes for surpercapacitors[J]. Solid State Ionics.... It is demonstrated that the composite material has advantages of both the high power density of the supercapacitor and the high energy density of the lithium ion battery. Moreover, the electrochemical......
-assisted sol-gel process [J]. Electrochemical Solid-State Letters, 2008, 11(5): A60-A63. [20] ZHANG Sen, DENG Chao, YANG Sai-yu. Preparation of nano-Li2FeSiO4 as cathode material for lithium-ion batteries [J]. Electrochemical Solid-State Letters, 2009, 12(7): A136-A139. [21] YAN Zi-peng, CAI Shu, ZHOU Xing, ZHAO Yong-ming, MIAO Li-juan. Sol-gel synthesis of nanostructured Li2FeSiO4/C as cathode......
Wrinkled Graphene-Reinforced Nickel Sulfide Thin Film as High-Performance Binder-Free Anode for Sodium-Ion BatteryXueke Xia1,Jian Xie1,2,Shichao Zhang3,Bin Pan4,Gaoshao Cao2,Xinbing Zhao1,21. State...="ChDivSummary">Sodium-ion batteries(SIBs) recently have received a worldwide attention due to the resource abundance of sodium and similar battery chemistry with lithium-ion batteries(LIBs). However, search......
for lithium-ion batteries [J]. Electrochem Solid-State Lett, 1999, 2: 161-163. [8] KEPLER K D, VAUGHEY J T, THACKERAY M M. LixCu6Sn5 (0<x<13): An intermetallic insertion electrode for rechargeable lithium batteries [J]. Electrochem Solid-State Lett, 1999, 2: 307-310. [9] ROM I, WACHTLER M, PAPAST I, SCHMIED M, BESENHARD J O, HOFER F, WINTER M. Electron microscopical characterization of Sn/SnSb......
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