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锂离子二次电池碳负极材料的改性
引用本文:吴宇平,方世璧,江英彦,万春荣. 锂离子二次电池碳负极材料的改性[J]. 物理化学学报, 1999, 15(2): 133-137. DOI: 10.3866/PKU.WHXB19990208
作者姓名:吴宇平  方世璧  江英彦  万春荣
作者单位:Institute of Nuclear Energy Technology,Tsinghua University,Beijing 102201,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080
摘    要:通过热处理,得到了以密胺树脂为基体的掺杂有磷的碳材料,并用元素分析、XPS、XBD进行了分析.结果表明磷酸加入以后,对氮原子的含量影响不大,但其键合状态发生了变化,使有利于可逆容量提高的graphene氮的相对含量增加,导致碳材料的可逆容量随磷酸加入量的变化而发生变化,最大可逆容量可达516mAHg-1

关 键 词:锂离子二次电池  碳负极  改性  密胺树脂  磷酸  
收稿时间:1998-04-08
修稿时间:1998-07-09

Modification of Carbon Anode of Lithium lon Secondary Battery
Wu Yuping ,Fang Shibi, Jiang Yingyan, Wan Chunrong. Modification of Carbon Anode of Lithium lon Secondary Battery[J]. Acta Physico-Chimica Sinica, 1999, 15(2): 133-137. DOI: 10.3866/PKU.WHXB19990208
Authors:Wu Yuping   Fang Shibi   Jiang Yingyan   Wan Chunrong
Affiliation:Institute of Nuclear Energy Technology,Tsinghua University,Beijing 102201|Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080
Abstract:Carbonaceous materials based upon melamine resin and doped with phosphorous were obtained by heat-treatment and were analyzed by elemental analysis, XPS and XRD. The results showed that the addition of phosphoric acid did not affect severely the content of nitrogen, but greatly affected the relative content of graphene nitrogen. The addition favors the increase of reversible lithium capacity. The addition of phosphoric acid resulted in a decrease of carbonization degree at lower temperature (600 ℃) and no much changes at higher temperature (800 ℃). The phosphorous added was dispersed homogeneously in the carbon materials and bonded not only with oxygen atom but also with the carbon structure, and the later bond was strengthened at higher temperature. All these factors lead to the changes of reversible capacity. At lower temperature,the reversible capacity below 0.9 V decreased with the amount of added phosphoric acid, while at higher temperature, the reversible capacity above 0.9 V increased. The reversible capacity of the carbon obtained in this work can reach 516 mA•h•g-1.
Keywords:Lithium ion secondary battery  Carbon anode  Modification  Melamine resin  Phosphoric acid  
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