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为了研究酸化条件对V2O5粉末结构和电化学性能的影响,利用HNO3和H2C2O4酸化NH4VO3溶液,经水热和后续热处理制备了V2O5粉体.利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和电化学工作站等对V2O5粉体的微观结构与电化学性能进行了测试.结果表明,所得粉体为纯V2O5相,前驱体溶液的pH值和酸化所用酸的酸根阴离子影响了最终粉体的晶体发育和微观结构.其中,利用HNO3酸化NH4VO3溶液至pH值=3制得的粉体为直径约100nm的纳米棒,在0.5和1C的放电速率下循环30次后,放电比容量仍有150mAh/g左右,且大电流放电性能更好.

参考文献

[1] Yin Dachuan;Wang Meng;Huang Weidong .The research progress of the positive and negative electrode materials for lithium-ion batteries[J].Journal of Functional Materials,1999,30(06):591-594.
[2] You Na Ko;Jung Hyun Kim;Seung Ho Choi;Yun Chan Kang .Electrochemical properties of spherically shaped dense V_2O_5 cathode powders prepared directly by spray pyrolysis[J].Journal of Power Sources,2012(Aug.1):84-91.
[3] Wang Hengguo;Ma Delong;Huang Yun et al.Electrospun V2O5 nanostructures with controllable morphology as high-performance cathode materials for lithium-ion batteries[J].Chemistry-European Journal,2012,18:89878993.
[4] Min Zeng;Haihong Yin;Ke Yu.Synthesis of V2O5 nanostructures with various morphologies and their electrochemical and field-emission properties[J].Chemical engineering journal,2012:64-70.
[5] Li Guicun;Pang Shuping;Jiang Li et al.Environmentally friendly chemical route to vanadium oxide single-crystalline nanobelts as a cathode material for lithium-ion batteries[J].Journal of Physical Chemistry B,2006,110:9383-9386.
[6] Hai-Long Fei;Mi Liu;Hui-Jing Zhou .Synthesis of V_2O_5 micro-architectures via in situ generation of single-crystalline nanoparticles[J].Solid state sciences,2009(1):102-107.
[7] Yu Wang;Hui Juan Zhang;Wei Xiang Lira .Designed strategy to fabricate a patterned V2O5 nanobelt array as a superior electrode for Li-ion batteries[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2011(7):2362-2368.
[8] Chan CK;Peng HL;Twesten RD;Jarausch K;Zhang XF;Cui Y .Fast, completely reversible Li insertion in vanadium pentoxide nanoribbons[J].Nano letters,2007(2):490-495.
[9] Chao-jun Cui;Guang-ming Wu;Jun Shen;Bin Zhou;Zhi-hua Zhang;Hui-yu Yang;Shi-feng She .Synthesis and electrochemical performance of lithium vanadium oxide nanotubes as cathodes for rechargeable lithium-ion batteries[J].Electrochimica Acta,2010(7):2536-2541.
[10] Takahashi K;Limmer S J;Wang Ying et al.Synthesis and electrochemical properties of single-crystal V2O5 nanorod arrays by template-based electrodeposition[J].Journal of Physical Chemistry B,2004,108:9795-9800.
[11] Livage J .Hydrothermal synthesis of nanostructured vanadium oxides[J].Materials,2010,3:4175-4195.
[12] Pan Dengyu;Zhang Shuyuan;Chen Yiqing et al.Hydrothermal preparation of long nanowires of vanadium oxide[J].Journal of Materials Research,2002,17(08):1981-1984.
[13] Bailey J K;Pozarnsky G A;Mecartney M L .The direct observation of structural development during vanadium pentoxide gelation[J].Journal of Materials Research,1992,7(09):2530-2537.
[14] Wu Yuping;Dai Xiaobing;Ma Junqi.The application and practice of lithium-ion batteries[M].北京:化学工业出版社,2004:191-192.
[15] Yan L. Cheah;Vanchiappan Aravindan;Srinivasan Madhavi .Electrochemical Lithium Insertion Behavior of Combustion Synthesized V_2O_5 Cathodes for Lithium-Ion Batteries[J].Journal of the Electrochemical Society,2012(3):A273-A280.
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