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首页> 外文期刊>ACS nano >Surface Modified Nanocellulose Fibers Yield Conducting Polymer-Based Flexible Supercapacitors with Enhanced Capacitances
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Surface Modified Nanocellulose Fibers Yield Conducting Polymer-Based Flexible Supercapacitors with Enhanced Capacitances

机译:具有增强的电容的表面改性纳米纤维素纤维屈服导电基于聚合物的柔性超级电容器

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摘要

We demonstrate that surface modified nanocellulose fibers (NCFs) can be used as substrates to synthesize supercapacitor electrodes with the highest full electrode-normalized gravimetric (127 F g(-1)) and volumetric (122 F cm(-3)) capacitances at high current densities (300 mA cm(-2) approximate to 33 A g(-1)) until date reported for conducting polymer-based electrodes with active mass loadings as high as 9 mg cm(-2). By introducing quaternary amine groups on the surface of NCFs prior to polypyrrole (PPy) polymerization, the macropore volume of the formed PPy-NCF composites can be minimized while maintaining the volume of the micro- and mesopores at the same level as when unmodified or carboxylate groups functionalized NCFs are employed as polymerization substrates. Symmetric, aqueous electrolyte-based, devices comprising these porosity-optimized electrodes exhibit device-specific volumetric energy and power densities of 3.1 mWh cm(-3) and 3 W cm(-3) respectively; which are among the highest values reported for conducting polymer electrodes in aqueous electrolytes. The functionality of the devices is verified by powering a red light-emitting diode with the device in different mechanically challenging states.
机译:我们证明了表面改性的纳米纤维素纤维(NCFs)可以用作基质,以合成具有最高的全电极归一化重量(127 F g(-1))和体积(122 F cm(-3))电容最高的超级电容器电极电流密度(300 mA cm(-2)约等于33 A g(-1)),直到据报道导电活性物质负载高达9 mg cm(-2)的聚合物基电极导电为止。通过在聚吡咯(PPy)聚合之前在NCF的表面上引入季胺基,可以使所形成的PPy-NCF复合材料的大孔体积最小化,同时将微孔和中孔的体积保持在与未改性或羧化时相同的水平。基团官能化的NCF用作聚合底物。包含这些孔隙率优化电极的基于电解质的对称水基器件,其器件特定的体积能量和功率密度分别为3.1 mWh cm(-3)和3 W cm(-3)。这是报道的在水性电解质中导电聚合物电极的最高值之​​一。通过在设备处于不同的机械挑战状态下为红色发光二极管供电,可以验证设备的功能。

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