SPRAM, CNRS , F-38000 Grenoble, France.
Fraunhofer-Institute for Applied Solid State Physics (IAF) , Tullastrasse 72, DE-79108 Freiburg, Germany.
ACS Appl Mater Interfaces. 2016 Jul 20;8(28):18069-77. doi: 10.1021/acsami.6b04816. Epub 2016 Jul 8.
A versatile and robust hierarchically multifunctionalized nanostructured material made of poly(3,4-(ethylenedioxy)thiophene) (PEDOT)-coated diamond@silicon nanowires has been demonstrated to be an excellent capacitive electrode for supercapacitor devices. Thus, the electrochemical deposition of nanometric PEDOT films on diamond-coated silicon nanowire (SiNW) electrodes using N-methyl-N-propylpyrrolidinium bis((trifluoromethyl)sulfonyl)imide ionic liquid displayed a specific capacitance value of 140 F g(-1) at a scan rate of 1 mV s(-1). The as-grown functionalized electrodes were evaluated in a symmetric planar microsupercapacitor using butyltrimethylammonium bis((trifluoromethyl)sulfonyl)imide aprotic ionic liquid as the electrolyte. The device exhibited extraordinary energy and power density values of 26 mJ cm(-2) and 1.3 mW cm(-2) within a large voltage cell of 2.5 V, respectively. In addition, the system was able to retain 80% of its initial capacitance after 15 000 galvanostatic charge-discharge cycles at a high current density of 1 mA cm(-2) while maintaining a Coulombic efficiency around 100%. Therefore, this multifunctionalized hybrid device represents one of the best electrochemical performances concerning coated SiNW electrodes for a high-energy advanced on-chip supercapacitor.
一种由聚(3,4-亚乙基二氧噻吩)(PEDOT)-包覆的金刚石@硅纳米线构成的多功能纳米结构材料,被证明是超级电容器器件的一种优异的电容电极。因此,使用 N-甲基-N-丙基吡咯烷𬭩双((三氟甲基)磺酰基)亚胺离子液体,通过电化学沉积法在金刚石包覆的硅纳米线(SiNW)电极上生长纳米级PEDOT 薄膜,在扫描速率为 1 mV s(-1)时,比电容值达到 140 F g(-1)。所生长的功能化电极在使用丁基三甲基铵双((三氟甲基)磺酰基)亚胺非质子离子液体作为电解质的对称平面微超级电容器中进行了评估。该器件在 2.5 V 的大电压单元内表现出非凡的能量和功率密度值,分别为 26 mJ cm(-2)和 1.3 mW cm(-2)。此外,该系统在 1 mA cm(-2)的高电流密度下进行 15000 次恒流充放电循环后,仍能保持 80%的初始电容,库仑效率约为 100%。因此,这种多功能混合器件代表了具有高能量的先进片上超级电容器用涂覆 SiNW 电极的最佳电化学性能之一。