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Facile fabrication of a novel nanoporous Au/AgO composite for electrochemical double-layer capacitor

机译:新型用于电化学双层电容器的纳米多孔Au / AgO复合材料的制备

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摘要

In this work, a novel nanoporous gold/silver oxide (NP Au/AgO) composite (NPAAC) was fabricated by a simple two-step partial dealloying-stripping process. Microstructural and electrochemical characterizations suggested that the NPAAC has a bicontinuous, interpenetrating nanoporous structure with ultrafine ligament-channel sizes down to similar to 10 nm, and it delivered a rectangle cyclic voltammetry (CV) curve with a wide electrochemical double-layer region from -0.3 to 0.7 V (vs. Ag/AgCl in sulfuric acid) and a specific capacitance of similar to 80 F g(-1). Moreover, the NPAAC revealed a superior cyclic performance as compared to metal-based pseudocapacitors, with stable charge-discharge cycling at similar to 77 F g(-1) for more than ten thousand times with no detectable degradation. This work demonstrates that the new systems of nanoporous noble metal/metal-oxide composites could be similarly fabricated by this approach and developed as potential double-layer capacitors with comparable cyclic performance to carbon-based supercapacitors.
机译:在这项工作中,通过简单的两步部分脱合金-剥离工艺制备了一种新型的纳米多孔金/氧化银(NP Au / AgO)复合材料(NPAAC)。微观结构和电化学特性表明,NPAAC具有双连续,互穿的纳米孔结构,具有超细的韧带通道,其尺寸可减小至约10 nm,并提供了矩形循环伏安(CV)曲线,具有从-0.3的宽电化学双层区域至0.7 V(相对于硫酸中的Ag / AgCl)和约80 F g(-1)的比电容。此外,与金属基假电容器相比,NPAAC表现出优异的循环性能,在类似于77 F g(-1)的条件下,稳定的充放电循环超过一万次,没有可检测到的降解。这项工作表明,纳米多孔贵金属/金属氧化物复合材料的新系统可以通过这种方法类似地制造,并被开发为潜在的双层电容器,其循环性能与碳基超级电容器相当。

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