Pre-heat treatment of carbonate precursor firstly in nitrogen and then oxygen atmospheres: A new procedure to improve tap density of high-performance cathode material Li1.167(Ni0.139Co0.139Mn0.556)O2 for lithium ion batteries
Pre-heat treatment of carbonate precursor firstly in nitrogen and then oxygen atmospheres: A new procedure to improve tap density of high-performance cathode material Li1.167(Ni0.139Co0.139Mn0.556)O2 for lithium ion batteries
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先氮气后氧气气氛预热碳酸盐前驱体:提高锂离子电池高性能正极材料Li1.167(Ni0.139Co0.139Mn0.556)O2振实密度的新工艺
DOI:
10.1016/j.jpowsour.2015.05.036
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发表时间:
2015-10
影响因子:
9.2
通讯作者:
Lianqi Zhang
中科院分区:
文献类型:
--
作者:
Xiaoqing Wang;Dawei Song;Jian Guo;Lianqi Zhang
In order to increase the tap density of Li-rich layered materials, a new pre-heat treatment procedure of (Ni1/6Co1/6Mn4/6)CO3precursors firstly using N2and then O2is adopted to separate processes of CO2emission and O2absorption, which presumably can reduce porosity of materials and then result in an improved tap density. In contrast to one-step pre-heat treatment procedure only in O2, two-steps procedure causes differences in morphology, tap density, particle distribution as well as structure for resultant metal oxides. A remarkably improved tap density of metal oxide with dense particles is observed with two-steps procedure. Consequently, Li1.167(Ni0.139Co0.139Mn0.556)O2obtained through two-steps procedure (LM-N) presents dense particle, much improved tap density, small BET specific surface area and additional existence of Ni3+in comparison with that obtained through one-step procedure (LM-O), although both samples exhibit similar well-defined layered structure. However, the results of cyclic voltammograms and charge–discharge test demonstrate the inferior electrochemical performances of LM-N with a discharge capacity of 76.7 mAh g−1for LM-N, which is in stark contrast with 267.9 mAh g−1of LM-O. This is possibly associated with the dense morphology, lattice defect as well as large Rctfor LM-N.
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影响因子:
6.6
作者:
Y. Chen;Guofeng Xu;Jianling Li;Yakun Zhang;Zhong-Cai Chen;F. Kang
通讯作者:
Y. Chen;Guofeng Xu;Jianling Li;Yakun Zhang;Zhong-Cai Chen;F. Kang
影响因子:
9.2
作者:
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S. Shi;J. Tu;Yu Tang;Yi Zhang;X. Wang;C. Gu
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5.4
作者:
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通讯作者:
G. Kim;Seung-Beob Yi;Y. Park;Ho Gi Kim
影响因子:
6.6
作者:
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通讯作者:
Xixi Shi;Chiwei Wang;Yantao Zhang;Qian Liu;Hong Li;Dawei Song;Lianqi Zhang
影响因子:
5.4
作者:
Johnson, CS;Kim, JS;Thackeray, MM
通讯作者:
Thackeray, MM