采用软化学合成法合成出基面间距为0.70nm的层状二氧化锰(bir-MnO2),并利用表面吸附技术制备了层状二氧化锰/苯胺-邻甲氧基苯胺共聚物复合材料(bir-MnO2/P(An-co-oAs)),借助FTIR、XRD、SEM、TGA、四探针和充放电循环实验等测试手段对样品的结构与性能进行表征.结果表明,P(An-co-oAs)的引入,对复合材料中bir-MnO2的层状结构破坏较小,P(An-co-oAs)通过氢键和静电作用吸附在bir-MnO2的表面.与bir-MnO2相比,复合材料的电导率提高2个数量级.首次放电比容量由bir-MnO2的188mAh/g提高到复合材料的202mAh/g.
参考文献
[1] | Fey G T K;Hsich M C;Jaw H K .[J].Journal of Power Sources,1993,43-44:673-681. |
[2] | Ammundsen B.;Paulsen J. .Novel lithium-ion cathode materials based on layered manganese oxides[J].Advanced Materials,2001(12/13):943-956. |
[3] | Bruce P G;Armstrong A R;Gitzendanner R L .[J].Journal of Materials Chemistry,1999,9:193-198. |
[4] | Passerini S;Chang D;Chu X et al.[J].Chemistry of Materials,1995,7:780-785. |
[5] | Strobel P;Mouget C .[J].Materials Research Bulletin,1993,28:93-100. |
[6] | Bach S.;Baffier N.;Pereiraramos JP. .RECHARGEABLE 3 V LI CELLS USING HYDRATED LAMELLAR MANGANESE OXIDE[J].Journal of the Electrochemical Society,1996(11):3429-3434. |
[7] | Tsuda M;Arai H;Sakurai Y .[J].Journal of Power Sources,2002,110:52-56. |
[8] | Taguchi S;Tanaka T .[J].Journal of Power Sources,1987,20:249-252. |
[9] | Wang G C;Yang Z Y;Li X W et al.[J].Carbon,2005,43:2564-2570. |
[10] | Cao Y;Andriatta A;Heeger A J et al.[J].Polymer,1989,30:2305-2311. |
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