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Synthesis of single-crystal-like nanoporous carbon membranes and their application in overall water splitting

机译:类单晶纳米多孔碳膜的合成及其在总水分解中的应用

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Nanoporous graphitic carbon membranes with defined chemical composition and pore architecture are novel nanomaterials that are actively pursued. Compared with easy-to-make porous carbon powders that dominate the porous carbon research and applications in energy generation/conversion and environmental remediation, porous carbon membranes are synthetically more challenging though rather appealing from an application perspective due to their structural integrity, interconnectivity and purity. Here we report a simple bottom–up approach to fabricate large-size, freestanding and porous carbon membranes that feature an unusual single-crystal-like graphitic order and hierarchical pore architecture plus favourable nitrogen doping. When loaded with cobalt nanoparticles, such carbon membranes serve as high-performance carbon-based non-noble metal electrocatalyst for overall water splitting.
机译:具有确定的化学组成和孔结构的纳米多孔石墨碳膜是积极追求的新型纳米材料。与在能量产生/转换和环境修复中主导多孔碳研究和应用的易于制造的多孔碳粉相比,多孔碳膜在结构上更具挑战性,尽管由于其结构完整性,互连性和纯度从应用角度来看颇具吸引力。在这里,我们报告了一种简单的自下而上的方法来制造大尺寸,独立式和多孔的碳膜,该膜具有不寻常的单晶状石墨顺序和分层孔隙结构以及有利的氮掺杂。当负载有钴纳米颗粒时,此类碳膜可作为用于整体水分解的高性能碳基非贵金属电催化剂。

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