Anchored Cu single atoms on porous g-C(3)N(4) for superior photocatalytic H(2) evolution from water splitting

锚定在多孔gC(3)N(4)上的Cu单原子用于实现优异的光催化水分解制氢性能

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Abstract

One of the most promising strategies for producing hydrogen is photocatalytic water splitting, in which the photocatalyst is a key component. Among many semiconductor photocatalysts, g-C(3)N(4) has attracted great attention due to its narrow band gap, excellent stability and low cost. However, practical application is limited by its poor intrinsic activity. In this work, a high-performance porous g-C(3)N(4) (PCN) photocatalyst with anchored Cu single atoms (CuSAs) was synthesized by a one-step co-heating approach. The obtained Cu1.5-PCN displays an excellent hydrogen evolution rate (HER) of 2142.4 μmol h(-1) g(-1) under visible light (=420 nm), which is around 15 and 109 times higher than those of PCN and bulk g-C(3)N(4), respectively. In addition, it also shows good stability during H(2) evolution. The results of experimental research and DFT simulations indicate that the single Cu ions formed bonds with the N-ring and these remain stable. Meanwhile, the special electronic structure of the Cu-N charge bridge extends the light absorption band to the visible-light region (380-700 nm). This high-performance and low-cost photocatalyst has great potential in solar energy conversion.

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