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首页> 外文期刊>Angewandte Chemie >A Graphitic-C3N4 'Seaweed' Architecture for Enhanced Hydrogen Evolution
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A Graphitic-C3N4 'Seaweed' Architecture for Enhanced Hydrogen Evolution

机译:用于增强氢气释放的Graphitic-C3N4“海藻”架构

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摘要

A seaweed-like graphitic-C3N4 (g-C3N4 "seaweed") architecture has been prepared by direct calcination of the freeze-drying-assembled, hydrothermally treated dicyandiamide fiber network. The seaweed network of mesoporous g-C3N4 nanofibers is favorable for light harvesting, charge separation and utilization of active sites, and has highly efficient photocatalytic behavior for water splitting. It exhibits a high hydrogen-evolution rate of 9900 mu molh(-1) g(-1) (thirty times higher than that of its g-C3N4 bulk counterpart), and a remarkable apparent quantum efficiency of 7.8% at 420 nm, better than most of the g-C3N4 nanostructures reported. This work presents a very simple method for designing and developing high-performance catalysts for hydrogen evolution.
机译:通过直接冷冻干燥,组装,水热处理的双氰胺纤维网络的煅烧,制备了海藻样石墨-C3N4(g-C3N4“海藻”)结构。介孔g-C3N4纳米纤维的海藻网络有利于光收集,电荷分离和活性位点的利用,并具有高效的水分解光催化性能。它具有9900μmolh(-1)g(-1)的高氢释放速率(比其g-C3N4本体对应物高30倍),并且在420 nm处具有显着的7.8%的表观量子效率,更好比大多数报道的g-C3N4纳米结构要多。这项工作提出了一种非常简单的方法,用于设计和开发用于析氢的高性能催化剂。

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