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钛酸锂材料蓄电池低温性能 被引量:7
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作者 刘建文 常赟 《电源技术》 CAS CSCD 北大核心 2013年第9期1524-1526,1529,共4页
采用纳米级钛酸锂材料作为负极材料,研究了不同导电剂对电极电导率的影响,并制备了10 Ah锂离子蓄电池,工作电压2.4 V,可以在低温-55℃1放电,在-40℃1充电,同时蓄电池显示出良好的倍率放电性能。相比传统的碳材料负极的锂离子蓄电池体系... 采用纳米级钛酸锂材料作为负极材料,研究了不同导电剂对电极电导率的影响,并制备了10 Ah锂离子蓄电池,工作电压2.4 V,可以在低温-55℃1放电,在-40℃1充电,同时蓄电池显示出良好的倍率放电性能。相比传统的碳材料负极的锂离子蓄电池体系,低温放电性能更好,并且具有优良的低温充电特性。 展开更多
关键词 钛酸锂 高功率 低温性能 低温充电
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Lithium-ion diffusion path of tetragonal tungsten bronze(TTB)phase Nb_(18)W_(16)O_(93)
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作者 Chao SHEN Sai-nan JIANG +2 位作者 Cui-min DING Wei-shun XUE Ke-yu XIE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第11期3679-3686,共8页
By taking tetragonal tungsten bronze(TTB)phase Nb_(18)W_(16)O_(93)as an example,an improved solid-state sintering method at lower temperature of 1000℃for 36 h was proposed via applying nanoscale raw materials.XRD,SEM... By taking tetragonal tungsten bronze(TTB)phase Nb_(18)W_(16)O_(93)as an example,an improved solid-state sintering method at lower temperature of 1000℃for 36 h was proposed via applying nanoscale raw materials.XRD,SEM and XPS confirm that the expected sample was produced.GITT results show that the lithium-ion diffusion coefficient of Nb_(18)W_(16)O_(93)(10−12 cm^(2)/s)is higher than that of the conventional titanium-based anode,ensuring a relatively superior electrochemical performance.The lithium-ion diffusion mechanism was thoroughly revealed by using density functional theory simulation.There are three diffusion paths in TTB phase,among which the interlayer diffusion with the smallest diffusion barrier(0.46 eV)has more advantages than other typical anodes(such as graphite,0.56 eV).The relatively smaller lithium-ion diffusion barrier makes TTB phase Nb_(18)W_(16)O_(93)become a potential highspecific-power anode material. 展开更多
关键词 lithium-ion battery niobium tungsten oxide tetragonal tungsten bronze(TTB)phase lithium-ion diffusion mechanism diffusion path
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