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3篇 您的检索式:作者名="John B.Goodenough"
    题名 作者 年代 出处 被引量
1A perspective on the Li-ion battery显示文摘In the 1960s,Rouxel in France and Robert Schroeder in Germany explored the chemistry of reversible intercalation of Li^+between MS2(M=transition metal)layers held together by weak Van der Waals bonding[1].In 1967,Kummer and Webber of the Ford Motor Co.had discovered fast 2D Na+diffusion at 300℃in incompletely occupied Na^+and O layers between spinel blocks of an aluminum oxide and had invented a sodium-sulfur battery operating above 300℃.John B.Goodenough Hongcai Gao 2019Science China Chemistry2019,62,12:11
2Formation of Stable Interphase of Polymer-in-Salt Electrolyte in All-Solid-State Lithium Batteries显示文摘The integration of solid-polymer electrolytes into all-solid-state lithium batteries is highly desirable to overcome the limitations of current battery configurations that have a low energy density and severe safety concerns.Polyacrylonitrile is an appealing matrix for solid-polymer electrolytes;however,the practical utilization of such polymer electrolytes in all-solid-state cells is impeded by inferior ionic conductivity and instability against a lithium-metal anode.In this work,we show that a polymer-in-salt electrolyte based on polyacrylonitrile with a lithium salt as the major component exhibits a wide electrochemically stable window,a high ionic conductivity,and an increased lithium-ion transference number.The growth of dendrites from the lithium-metal anode was suppressed effectively by the polymer-in-salt electrolyte to increase the safety features of the batteries.In addition,we found that a stable interphase was formed between the lithium-metal anode and the polymer-in-salt electrolyte to restrain the uncontrolled parasitic reactions,and we demonstrated an all-solid-state battery configuration with a LiFePO4 cathode and the polymer-in-salt electrolyte,which exhibited a superior cycling stability and rate capability.Hongcai Gao Nicholas S.Grundish Yongjie Zhao Aijun Zhou John B.Goodenough 2021Energy Material Advances2021,,1:2
3Superior Perovskite Oxide‐Ion Conductor; Strontium‐ and Magnesium‐Doped LaGaO<sub>3</sub>: III, Performance Tests of Single Ceramic Fuel Cells显示文摘KeqinHuang RobinTichy John B.Goodenough ChristopherMilliken 2005Journal of the American Ceramic Society2005,,10:1
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