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首页> 外文期刊>Nanoscale >Layer by layer assembly of ultrathin V2O5 anchored MWCNTs and graphene on textile fabrics for fabrication of high energy density flexible supercapacitor electrodes
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Layer by layer assembly of ultrathin V2O5 anchored MWCNTs and graphene on textile fabrics for fabrication of high energy density flexible supercapacitor electrodes

机译:一层一层地组装超薄V2O5的锚定热合和石墨烯在纺织面料制造高能量密度的灵活超级电容器电极

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摘要

Among transition metal oxides, vanadium oxides have received relatively modest attention for supercapacitor applications. Yet, this material is abundant relatively inexpensive and offer several oxidation states which can provide a broad range of redox reactions suitable for supercapacitor operation. Electrochemical supercapacitors based on nanostructured vanadium oxide (V2O5) suffer from relatively low energy densities as they have low surface area and poor electrical conductivities. To overcome these problems, we developed a layer by layer assembly (LBL) technique in which a graphene layer was alternatively inserted between MWCNT films coated with ultrathin (3 nm) V2O5. The insertion of a conductive spacer of graphene between the MWCNT films coated with V2O5 not only prevents agglomeration between the MWCNT films but also substantially enhances the specific capacitance by 67%, to as high as ~2590 F g~(-1) Furthermore, the LBL assembled multilayer supercapacitor electrodes exhibited an excellent cycling performance of >97%, capacitance retention over 5000 cycles and a high energy density of 96 W h kg~(-1) at a power density of 800 W kg~(-1). Our approach clearly offers an exciting opportunity for enhancing the device performance of metal oxide-based electrochemical supercapacitors suitable for next-generation flexible energy storage devices by employing a facile LBL assembly technique.
机译:过渡金属氧化物中,钒氧化物得到了相对温和的关注超级电容器的应用程序。是丰富的相对便宜和报价吗可以提供几个氧化态广泛的适用于氧化还原反应超级电容器操作。基于纳米钒的超级电容器氧化(V2O5)遭受相对较低的能量密度低表面积和贫穷电子导率。问题,我们开发了一个一层一层地组装(LBL)技术在石墨烯层另外之间插入MWCNT电影涂层超薄V2O5(3海里)。之间的石墨烯导电垫片MWCNT影片涂上了V2O5不仅阻止了MWCNT电影也之间的聚集大大提高比电容67%,高达~ 2590 F (g ~(1)此外,LBL组装多层超级电容器电极表现出一个优秀的自行车> 97%的性能,电容保留5000周期和较高的能量密度的96 W h公斤~ (1)800 W的功率密度公斤~(1)。方法显然提供了一个激动人心的机会为提高设备性能的金属氧化物电化学超级电容器适合新一代灵活的能量存储设备采用一个简单LBL组装技术。

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