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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Assembling fabrication and capacitance of manganese oxide nanosheets and functionalized carbon nanotubes hybrid material
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Assembling fabrication and capacitance of manganese oxide nanosheets and functionalized carbon nanotubes hybrid material

机译:氧化锰纳米片与功能化碳纳米管杂化材料的组装制备及电容

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The manganese oxide nanosheets (MnO_2) with negative charge and the functionalized carbon nanotubes (CNTs) with positive charge are selected as assembling blocks, and the manganese oxide nanosheets and functionalized carbon nanotubes hybrid material (CNTs-MnO_2 hybrid material) is fabricated by an assembling flocculation method. The restacking process of the manganese oxide nanosheets is effectively prevented due to the existence of CNTs, and manganese oxide nanosheets exist in nearly exfoliation state in CNTs-MnO_2 hybrid material. The morphology and structure of the obtained materials are investigated by FTIR, XRD, SEM and TEM. A unique flaky appearance is observed for hybrid material. The capacitance of the CNTs-MnO_2 hybrid material is investigated by cyclic voltammetry (CV) and Nyquist plots. A strong synergistic effect between the functionalized CNTs and exfoliated MnO_2 is observed. The doped CNTs not only increase the utilization of manganese oxide nanosheets in the active cathode material, but also improve its performance at the high rate charge and discharge. The capacitance of CNTs-MnO_2 hybrid material electrode is about 285Fg~(-1) at 5mVs~(-1). A relative high specific capacitance of 151Fg~(-1) can be maintained even at 100mVs~(-1).
机译:选择带负电荷的锰氧化物纳米片(MnO_2)和带正电荷的官能化碳纳米管(CNT)作为组装块,并通过组装制备氧化锰纳米片和官能化碳纳米管杂化材料(CNTs-MnO_2杂化材料)絮凝法。由于碳纳米管的存在,有效地防止了锰氧化物纳米片的再堆叠过程,并且锰氧化物纳米片在碳纳米管-MnO_2杂化材料中几乎以剥离状态存在。用FTIR,XRD,SEM和TEM研究了所得材料的形貌和结构。对于混合材料观察到独特的片状外观。通过循环伏安法(CV)和奈奎斯特图研究了CNTs-MnO_2杂化材料的电容。观察到官能化的CNT与剥离的MnO_2之间有很强的协同作用。掺杂的CNT不仅增加了活性阴极材料中锰氧化物纳米片的利用率,而且还提高了其在高倍率充电和放电时的性能。 CNTs-MnO_2杂化材料电极在5mVs〜(-1)时的电容约为285Fg〜(-1)。即使在100mVs〜(-1),也可以保持151Fg〜(-1)的相对较高的比电容。

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