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层状Li_(0.78)Ni_(0.3)Mn_(0.7)O_2正极材料的合成与性质研究 被引量:5
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作者 钟辉 许惠 +1 位作者 汪文成 周燕芳 《化学学报》 SCIE CAS CSCD 北大核心 2003年第4期510-513,447,共4页
以层状Na0 .78Ni0 .3 Mn0 .7O2 为前驱体 ,通过离子交换 ,合成出具有O2型结构特征的掺镍层状Li0 .78Ni0 .3 Mn0 .7O2 锂离子电池正极材料 ,并进行了XRD ,SEM和电性能研究 .电性能测试分析表明该材料在 2 .0~ 4.2V区仅存在一个充放电平... 以层状Na0 .78Ni0 .3 Mn0 .7O2 为前驱体 ,通过离子交换 ,合成出具有O2型结构特征的掺镍层状Li0 .78Ni0 .3 Mn0 .7O2 锂离子电池正极材料 ,并进行了XRD ,SEM和电性能研究 .电性能测试分析表明该材料在 2 .0~ 4.2V区仅存在一个充放电平台 ,可逆比容量达 180mAh·g-1,经 2 0次充放电循环后 ,仍能保持 88%的容量 。 展开更多
关键词 li0.78ni0.3mn0.7o2 正极材料 合成 锂离子电池 电性能 锂镍锰复合氧化物
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Novel layered K0.7Mn0.7Ni0.3O2 cathode material with enlarged diffusion channels for high energy density sodium-ion batteries 被引量:1
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作者 Jinghui Chen Zhitong Xiao +5 位作者 Jiashen Meng Jinzhi Sheng Yanan Xu Junjun Wang Chunhua Han Liqiang Mai 《Science China Materials》 SCIE EI CSCD 2020年第7期1163-1170,共8页
As promising,low-cost alternatives of lithiumion batteries for large-scale electric energy storage,sodiumion batteries(SIBs)have been studied by many researchers.However,the relatively large size of Na+leads to sluggi... As promising,low-cost alternatives of lithiumion batteries for large-scale electric energy storage,sodiumion batteries(SIBs)have been studied by many researchers.However,the relatively large size of Na+leads to sluggish diffusion kinetics and poor cycling stability in most cathode materials,restricting their further applications.In this work,we demonstrated a novel K+-intercalated Mn/Ni-based layered oxide material(K0.7Mn0.7Ni0.3O2,denoted as KMNO)with stabilized and enlarged diffusion channels for high energy density SIBs.A spontaneous ion exchange behavior in forming K0.1Na0.7Mn0.7Ni0.3O2between the KMNO electrode and the sodium ion electrolyte was clearly revealed by in situ X-ray diffraction and ex situ inductively coupled plasma analysis.The interlayer space varied from 6.90 to 5.76?,larger than that of Na0.7Mn0.7Ni0.3O2(5.63?).The enlarged ionic diffusion channels can effectively increase the ionic diffusion coefficient and simultaneously provide more K+storage sites in the product framework.As a proof-of-concept application,the SIBs with the as-prepared KMNO as a cathode display a high reversible discharge capacity(161.8 mA h g-1at0.1 A g-1),high energy density(459 W h kg-1)and superior rate capability of 71.1 mA h g-1at 5 A g-1.Our work demonstrates that the K+pre-intercalation strategy endows the layered metal oxides with excellent sodium storage performance,which provides new directions for the design of cathode materials for various batteries. 展开更多
关键词 K0.7Mn0.7Ni0.3O2 K^+pre-intercalation enlarged layered structure high energy density sodium-ion batteries
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