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1.Keywords: lithium-ion secondary batteries, lithium cobalt oxide, lithium nickel oxide, lithium manganese oxide, and nanotechnology.
关键词:离子二次电池、氧化物氧化物氧化物、奈米科技。收藏指正
2.Lithium vanadium oxide Li1+δV3O8 is a very promising cathode material which will be used in the future for lithium ion batteries.
氧化物Li1+δV3O8是一种非常有应用前景的离子蓄电池正极材料。收藏指正
3.Spinel lithium manganese oxide as the precursor of lithium ionic sieve is presented with respect to its structure and synthesis method, and the solid-state coordination reaction method and hydrothermal method are considered as promising ways of synthesis.
摘要介绍了作为离子筛前体的尖晶石型氧化物的结构与合成方法,指出固相配位反应法和水热合成法极具发展前景。收藏指正
4.After several cycles, the crystal structure has changed from layer lithium manganese oxide to 6 nm spinel-type Li0.91 [Mn(Cr)]0.09-[Mn(Cr)]1.84-Li0.16O4 and 20 nm sodium chloride-type Li0.5[Mn(Cr)]0.5O, both of which are electrochemically active materials.
电化学循环后, 正交层状结构转为成均有电化学活性的晶粒尺寸6 nm的类尖晶石型与20 nm的氯化纳型结构,晶体结构中8 a 位、16 d位和4 a位均由Li和Mn共位,其摩尔比分别为0.91:0.09,O.收藏指正
5.CV and EIS Besides the matrix elements lithium and manganese, the oxide contained a little aluminum It was a spinel structure with a =0 822?
其晶体结构属于尖晶石型 ,晶胞常数a =0 82 2 6nm ,比标准氧化物 (LiMn2 O4 ,a =0 82 48nm)小 ; 该氧化物为球形颗粒 ,平均粒径为 5 0 μm ;收藏指正
6.Nanosized cobalt-based oxide (Co 3O 4, CoB 1.36 O 2.8 and CoB 0.5 Al 0.1 O 1.5 ) samples were prepared by rheological phase method and were tested as anodes in secondary lithium batteries.
采用流变相法合成Co3 O4 ,CoB1.3 6 O2 .8,CoB0 .5Al0 .1O1.5样品 ,并研究其作为离子电池负极材料的电化学性能 .收藏指正
7.The resulting titanium-vanadium oxide exhibits similar capacity (approximately 400mAh/g), with but better cycling stability than the control sample prepared in the absence of dodecylamine when used as a cathode in lithium batteries.
测试了该氧化物作为电池正极材料的性能,发现引入纳米结构极大地提高了材料的充放电稳定性。收藏指正
8.The modern aspects of new materials with graphite-like structure, containing carbon element, such asin B-C-N and C-Si-O groups, other non-carbon materials, such as nitride and oxide, including theirpreparation, composition, structure and performance in lithium-ion batteries were reviewed.
主要介绍了具有类石墨结构的含碳化合物,如B-C-N系材料和C-Si-O材料,以及一些非碳材料,如氮化物、氧化物的制备、组成、结构和作为离子电池负极的性能等方面的研究现状;收藏指正
9.The composite polymer electrolytes, consisting of a linear poly ( ethylene oxide ) ( PEO ) , Li(CF3SO2)2N salt, and different amount of (-LiAlO2 as ceramic fillers, were prepared by the solvent casting technique. The all-solid-state Li/S cell was composed of Lithium metal anode, P(EO)20Li(CF3SO2)2N
通过选择适量的γ-LiAlO2填充于PEO(聚环氧乙烯)类聚合物电解质,组装了以金属Li为负极、P(EO)20Li(CF3SO2)2N-10wt%γLiAlO2为电解质、基于单质S为复合正极的全固态电池,并研究了其充放电特性。 且采用场发射扫描电镜与阻抗图谱分析了容量衰减的可能原因。收藏指正
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