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Scalable syntheses of three-dimensional graphene nanoribbon aerogels from bacterial cellulose for supercapacitors

机译:来自小型电容器的细菌纤维素的三维石墨烯纳米孔气凝胶可缩放合成

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Three-dimensional (3D) carbon aerogels with well-defined structures, e.g. high specific surface area (SSA), appropriate pore size distribution, good electrical conductivity and ideal building blocks, have been regarded as promising electrode materials or substrates for incorporation with pseudocapacitive materials for energy storage and conversion applications. Herein, we report a simple and scalable sonochemical method followed by a chemical activation process to transform bacterial cellulose-derived carbon nanofiber aerogels (CNFAs) into 3D graphene nanoribbon aerogels (GNRAs) for supercapacitors. Benefiting from a high SSA, reasonable pore size distribution and good conductivity, the GNRA electrode demonstrates a long cyclability, good rate capability and high charge storage performance for supercapacitors, yielding more than 1.5 times (three-electrode cell) and 2.6 times (two-electrode cell) the gravimetric capacitance of the CNFA electrode. In addition, a hybrid Ni-Co layered double hydroxides (LDHs)@GNRAs electrode achieves an impressive gravimetric capacitance of 968 F g(-1) (based on the mass of the active material) at a current density of 1 A g(-1). Moreover, an asymmetric supercapacitor device with a remarkable energy density of 29.87 Wh kg(-1), wide working voltage windows of 1.6 V and good cycling stability (63.5% retention after 10 000 cycles) is achieved by using the GNRA as an anode and the Ni-Co LDHs@GNRAs as a cathode.
机译:具有明确定义的结构的三维(3D)碳气凝胶,例如,高比表面积(SSA),适当的孔径分布,良好的导电性和理想构建块被认为是有希望的电极材料或基材,用于掺入用于储能和转化应用的假偶联材料。在此,我们报告了一种简单且可伸缩的Sonochemical方法,然后进行化学活化方法,将细菌纤维素衍生的碳纳米纤维气动凝胶(CNFAs)转化为超级电容器的3D石墨烯纳米植极(GNRAS)。受益于高SSA,合理的孔径分布和良好的导电性,GNRA电极对超级电容器的长度可靠性,良好的速率和高电荷存储性能表现出了较长的,产生了1.5倍(三电极电池)和2.6倍(两倍)(两个 - 电极电池)CNFA电极的重量电容。此外,杂交Ni-Co层双氢氧化物(LDHS)@gnras电极以1 a g的电流密度达到968f g(-1)的令人印象深刻的重量电容(基于活性材料的质量)( - 1)。此外,通过使用GNRA作为阳极,实现了具有29.87WHKG(-1),宽的工作电压窗口,宽的工作电压窗口,宽的循环稳定性(在10 000次循环后保持良好的循环稳定性(63.5%的循环稳定性)的不对称超级电容器装置。 Ni-Co LDHS @ GNRAS作为阴极。

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