期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Research Progress in Lithium-Excess Disordered Rock-Salt Oxides Cathode 被引量:1
1
作者 Manxi Wang Xiaochuan Chen +4 位作者 Hurong Yao Ganggang Lin Jinhyuk Lee Yuming Chen Qinghua Chen 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2022年第4期1139-1154,共16页
The increasing demand for new energy sources has promoted the improvement of the energy storage capacity of lithium-ion batteries(LIBs)that urged the development of higher energy density cathode materials.The enhancem... The increasing demand for new energy sources has promoted the improvement of the energy storage capacity of lithium-ion batteries(LIBs)that urged the development of higher energy density cathode materials.The enhancement of the classical cathode in the last 30 years has reached a bottleneck,and then the discovery of the lithium-excess disordered materials has greatly expanded the research space of the cathode materials.Compared with the conventional layered oxides,the lithium-excess disordered rock-salt oxides(LEDRXs)with a more stable structure has higher extractable Li^(+)content,even though the inactive high-valent transition metals(TMs)were needed to compensate for the excess Li,which would reduce the total TM redox content.In addition,oxygen redox provides additional electron capacity for the materials,which also causes O loss and results in the subsequent poor cycle performance.Herein,a series of studies about LEDRXs and their targeted modification measures are summarized,including the prospect of the materials,in order to provide ideas for the design of highperformance LEDRXs.Finally,the new discoveries and outlook on future research directions of LEDRX cathode materials for LIBs with higher energy density are given. 展开更多
关键词 disordered rock-salt oxides lithium-excess lithium-ion batteries
下载PDF
掺锂量对锂离子电池正极材料LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2的影响研究
2
作者 张梅有 张正国 +2 位作者 王利民 侯春平 龚波林 《广州化工》 CAS 2013年第20期42-43,57,共3页
采用共沉淀法,分别控制锂过量3%、5%和7%,制备了LiNi1/3Co1/3Mn1/3O2的前驱体,把真空干燥后的前驱体置于空气气氛下的马弗炉中,控制煅烧温度为900℃,对该前驱体进行煅烧。对所得样品进行XRD、SEM表征、电性能测试,根据XRD图、SEM图和充... 采用共沉淀法,分别控制锂过量3%、5%和7%,制备了LiNi1/3Co1/3Mn1/3O2的前驱体,把真空干燥后的前驱体置于空气气氛下的马弗炉中,控制煅烧温度为900℃,对该前驱体进行煅烧。对所得样品进行XRD、SEM表征、电性能测试,根据XRD图、SEM图和充放电循环曲线,探讨了不同掺锂量对产物的影响,最后得到过锂3%条件下煅烧的材料形貌和电化学性能最佳的结论。 展开更多
关键词 锂离子电池 正极材料 过锂 三元镍钴锰
下载PDF
富锂正极材料xLi_3NbO_4·(1-x)LiMO_2(M=Mn,Co;0 被引量:5
3
作者 杨春 龚正良 +1 位作者 赵文高 杨勇 《化学学报》 SCIE CAS CSCD 北大核心 2017年第2期212-217,共6页
采用高温固相法合成了含铌富锂材料xLi_3NbO_4·(1-x)LiMnO_2(0<x<1),研究了Li_3NbO_4含量对其结构和性能的影响.X射线衍射分析结果表明当x取值在0.25~0.67之间时可得到纯相固溶体材料,属立方晶系,为Fm-3m空间群.x=0.25和x=0... 采用高温固相法合成了含铌富锂材料xLi_3NbO_4·(1-x)LiMnO_2(0<x<1),研究了Li_3NbO_4含量对其结构和性能的影响.X射线衍射分析结果表明当x取值在0.25~0.67之间时可得到纯相固溶体材料,属立方晶系,为Fm-3m空间群.x=0.25和x=0.43的材料具有较好的电化学性能,首次放电容量可达216 mAh·g^(-1),但是两者都表现出明显的电压衰退,x=0.43的材料由于含有更多的Li_3NbO_4组分,电压衰减的情况得到了抑制.x=0.43材料的非原位XPS和XAFS研究表明,其充电过程分为两个阶段,4.3 V以下的阶段发生的电化学过程是脱出Li^+同时Mn^(3+)被氧化到Mn^(4+),4.3 V以上的阶段则由O^(2-)的氧化来提供电荷补偿.通过对x=0.43的样品进行钴掺杂,考察了钴掺杂对0.43Li_3NbO_4·0.57LiMn_(1-y)Co_yO_2(y=0.25,0.5)结构和性能的影响.研究表明钴掺杂改善了材料电导,降低了电极传荷阻抗,从而提高了材料倍率性能,同时保持了较好的循环稳定性. 展开更多
关键词 锂离子电池 Li3NbO4 岩盐结构 富锂材料 电化学性能
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部