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Correlation of the structure and applications of dealloyed nanoporous metals in catalysis and energy conversion/storage

机译:相关的结构和应用程序dealloyed在催化和纳米多孔金属能量转换和存储

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Nanoporous metals produced by dealloying have shown great promise in many areas such as catalysis/electrocatalysis, energy conversion/storage, sensing/biosensing, actuation, and surface-enhanced Raman scattering. Particularly, nanoscale metal ligaments with high electronic conductivity, tunable size and rich surface chemistry make nanoporous metals very promising as catalysts/electrocatalysts for energy conversion applications such as fuel cells and also as versatile three-dimensional substrates for energy-storage in supercapacitors and lithium ion batteries. In this review, we focus on the recent developments of dealloyed nanoporous metals in both catalysis/electrocatalysis and energy storage. In particular, based on the state-of-the-art electron microscopy characterization, we explain the atomic origin of the high catalytic activity of nanoporous gold. We also highlight the recent advances in rationally designing nanoporous metal-based composites and hierarchical structures for enhanced energy storage. Finally, we conclude with some outlook and perspectives with respect to future research on dealloyed nanoporous metals in catalysis-and energy-related applications.
机译:纳米多孔金属产生的脱合金在许多领域,如显示伟大的承诺催化/电催化作用,能量转换/存储、传感/若驱动和表面增强拉曼散射。特别是纳米级金属高的韧带电子电导率,可调大小和丰富表面化学纳米多孔金属非常有前途的催化剂/ electrocatalysts燃料电池等能量转换的应用程序也为通用的三维基质在超级电容器储能和锂离子电池。关注dealloyed的最新发展纳米多孔金属的催化/电催化作用和能量储存。具体来说,基于最先进的电子显微镜表征,我们解释一下原子的高催化活性纳米多孔金的。合理设计纳米多孔的进步金属复合材料和层次结构增强能量储存。我们总结一些前景和观点对未来的研究在dealloyed纳米多孔金属在催化和能源相关应用程序。

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