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三元阴极材料的电性能及其在镁固态电池中的应用
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作者 林枫凉 薛坚 王文楼 《科技通报》 1991年第1期10-12,45,共4页
合成的三元阴极材料,经X射线粉末衍射鉴定,其组成为Mo_(0.8)V_(5.2)O_(13),测得该材料的室温电导率为10^(-4)(Ωcm)^(-1)数量级,求得在298~363K之间的电导激活能为0.175eV。用这种阴极材料组装成全固态Mg/Mo_(0.8) V_(5.2)O_(13)电池,... 合成的三元阴极材料,经X射线粉末衍射鉴定,其组成为Mo_(0.8)V_(5.2)O_(13),测得该材料的室温电导率为10^(-4)(Ωcm)^(-1)数量级,求得在298~363K之间的电导激活能为0.175eV。用这种阴极材料组装成全固态Mg/Mo_(0.8) V_(5.2)O_(13)电池,其开路电压为2.0V。在复合阴极材料中加入适量的添加剂(如氯化物等),电池具有良好的储存性能及放电性能,当负载为50kΩ时,从1.4V起分段出现平台,各持续4~5天不等。电池的放电容量为28.5 mA·h,比能量为75.7W·h/kg。这种固态电池的阴极利用率较高,循环寿命较长,并且能够经受深度放电。最后对导电机理作了探讨。 展开更多
关键词 三元阴极材料 电性能 镁固态电池
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以色列研究出新型固态可充电镁电池
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《新材料产业》 2003年第6期51-52,共2页
关键词 固态可充电电池 以色列 有机卤素铝液态电解质 合金 阴极 凝胶电解质 储能密度
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Data-Driven Viewpoint for Developing Next-Generation Mg-Ion Solid-State Electrolytes
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作者 Fang-Ling Yang Ryuhei Sato +5 位作者 Eric Jianfeng Cheng Kazuaki Kisu Qian Wang Xue Jia Shin-ichi Orimo Hao Li 《电化学(中英文)》 CAS 北大核心 2024年第7期38-49,共12页
Magnesium(Mg)is a promising alternative to lithium(Li)as an anode material in solid-state batteries due to its abundance and high theoretical volumetric capacity.However,the sluggish Mg-ion conduction in the lattice o... Magnesium(Mg)is a promising alternative to lithium(Li)as an anode material in solid-state batteries due to its abundance and high theoretical volumetric capacity.However,the sluggish Mg-ion conduction in the lattice of solidstate electrolytes(SSEs)is one of the key challenges that hamper the development of Mg-ion solid-state batteries.Though various Mg-ion SSEs have been reported in recent years,key insights are hard to be derived from a single literature report.Besides,the structure-performance relationships of Mg-ion SSEs need to be further unraveled to provide a more precise design guideline for SSEs.In this viewpoint article,we analyze the structural characteristics of the Mg-based SSEs with high ionic conductivity reported in the last four decades based upon data mining-we provide big-data-derived insights into the challenges and opportunities in developing next-generation Mg-ion SSEs. 展开更多
关键词 Data mining Magnesium-ion solid-state electrolytes All-solid-state batteries Magnesium-ion conductivity
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