Morag Ahiud, Becker James Y, Jelinek Raz
Department of Chemistry, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.
Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.
ChemSusChem. 2017 Jul 10;10(13):2736-2741. doi: 10.1002/cssc.201700500. Epub 2017 May 24.
Microsupercapacitors are touted as one of the promising "next frontiers" in energy-storage research and applications. Despite their potential, significant challenges still exist in terms of physical properties and electrochemical performance, particularly attaining high energy density, stability, ease of synthesis, and feasibility of large-scale production. We present new freestanding microporous electrodes comprising self-assembled scaffold of gold and reduced graphene oxide (rGO) nanowires coated with MnO . The electrodes exhibited excellent electrochemical characteristics, particularly superior high areal capacitance. Moreover, the freestanding Au/rGO scaffold also served as the current collector, obviating the need for an additional electrode support required in most reported supercapacitors, thus enabling low volume and weight devices with a high overall device specific energy. Stacked symmetrical solid-state supercapacitors were fabricated using the Au/rGO/MnO electrodes in parallel configurations showing the advantage of using freestanding electrodes in the fabrication of low-volume devices.
微型超级电容器被誉为储能研究与应用中颇具前景的“下一个前沿领域”之一。尽管它们具有潜力,但在物理性质和电化学性能方面仍存在重大挑战,尤其是在实现高能量密度、稳定性、易于合成以及大规模生产的可行性方面。我们展示了一种新型的独立式微孔电极,该电极由金和涂有MnO的还原氧化石墨烯(rGO)纳米线的自组装支架组成。这些电极表现出优异的电化学特性,特别是具有卓越的高面积电容。此外,独立式Au/rGO支架还充当集流体,无需大多数已报道的超级电容器所需的额外电极支撑,从而能够制造出体积小、重量轻且整体器件比能量高的器件。使用Au/rGO/MnO电极以并联配置制造了堆叠式对称固态超级电容器,展示了在制造小体积器件时使用独立式电极的优势。