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    题名 作者 年代 出处 被引量
1LiMn_2O_4 thin films derived by rapid thermal annealing and their performance as cathode materials for Li ion battery显示文摘The LiMn2O4 thin film as a cathode material was prepared through solution deposition followed by rapid thermal annealing (RTA). The phase identification and the study of surface morphology were carried out by X-ray diffraction and scanning electron microscopy. Electrochemical properties were examined by cyclic voltammetry, galvanostatic charge-discharge experiments, and electrochemical impedance spectroscopy. The results show that the film prepared by this method is homogeneous, dense, and crack-free. The thin film has a capacity of 38 μAh/(cm2?μm) with the capacity loss of 0.037% per cycle after being cycled for 100 times. The average diffusion coefficient for lithium ions in the RTA-derived LiMn2O4 thin film is 1 × 10?10 cm2?s?1.WU Xianming HE Zeqiang MA Mingyou XIAO Zhuobing XU Mingfei 2006Rare Metals2006,25,6:2
2显示文摘W Xingming L Xinhai X Zhuobing 2004Materials Chem- istry and Physics2004,84,:1
3Characterization and electrochemical properties of LiMn2O4 thin films prepared by solution deposition显示文摘Wu Xianming Ph D He Zeqiang Xu Mingfei Li Xinhai Xiao Zhuobing 2006Journal of Wuhan University of Technology - Mater Sci Ed2006,,3:1
4Synthesis and elec- trochemical properties of SnO2-CuO nanocomtposite powders 显示文摘Ma Mingyou He Zeqiang Xiao Zhuobing 2006Trans Nonferrous Met S China2006,16,:1
5显示文摘 Wu XianMing Wang ShaoWei 2001Materials Research Bulletin2001,36,:1
6Preparation and characterization of Li4/3Ti5/3O4 thin films by solution deposition 显示文摘Wu Xianming Xiao Zhuobing Ma Mingyou 2005Materials Letters2005,60,:1
7Reconstructionofflametemperaturefieldwithopticalsectioningmethod显示文摘ZhuoB ZhangJ WangS 2011IETImageProcessing2011,5,38:1
8Comparative Study of LiMn2O4 Thin Films Heat-treated by Conventional and Rapid Thermal Annealing显示文摘阴极材料 LiMn_2O_4 薄电影被常规热退火跟随的答案免职(CTA )(RTA ) 并且快速的热退火作为开始材料用醋酸锂和乙酸锰准备。阶段和表面形态学鉴定被 X 光检查衍射和扫描电子显微镜学做。薄电影的电气化学的性质被循环伏安法,费用分泌物实验,电气化学的阻抗光谱学和潜在的步骤技术执行。结果证明两部薄电影同类、没有裂缝。与 CTA 相比导出薄电影,有更小的谷物的导出的缩放的 RTA 更光滑、稠密。CTA 和 RTA 导出 LiMn_2O_4 薄电影交付 34.5 muAh/(cm^2 中心点妈妈) 和 38 muAh/(cm^2 中心点妈妈) 的能力并且在分别地被骑车 100 次以后每周期显示出 0.050% 和 0.037% 的能力损失。在 CTA 的锂离子的散开系数导出 LiMn_2O_4 thin-filmelectrode 是 4.59 X 10 ^(-11) cm^2/s,和在 RTA 的锂离子的导出一个是 3.86 X10^(-11) cm^2/s。Xianming WU Mingyou MA Zhuobing XIAO Zeqiang HE Jianben LIU Mingfei XU 2006Journal of Materials Science & Technology2006,22,3:0
9Current knowledge of COVID-19:Advances,challenges and future perspectives显示文摘The pandemic of coronavirus disease 2019(COVID-19)has already evoked massive influence.The global pandemic has been ravaging the whole world for a year,with the number of confirmed human infection cases over 150 million and a death toll exceeding 3 million.Although the genomic sequence of the cognate pathogen SARS-CoV-2(severe acute respiratory syndrome coronavirus 2)has been quickly determined,there are still many unknown aspects,including the virus origin and evolution trend,and the effectiveness of current vaccines and drugs against the mutating virus.This review summarizes current knowledge and advances about COVID-19,including virus origin,transmission and infection,with the aim to improve the understanding of COVID-19 and provide a new perspective for future studies.Yuhan Wu Zhuobing Peng Yongxue Yan Jintao Hu Yalong Wang Xiaoyu Wang Ruchao Peng Daniel Watterson Yi Shi 2021Biosafety and Health2021,3,4:0
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