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首页> 外文期刊>Journal of Colloid and Interface Science >Rationally constructing of a novel 2D/2D WO3/Pt/g-C3N4 Schottky-Ohmic junction towards efficient visible-light-driven photocatalytic hydrogen evolution and mechanism insight
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Rationally constructing of a novel 2D/2D WO3/Pt/g-C3N4 Schottky-Ohmic junction towards efficient visible-light-driven photocatalytic hydrogen evolution and mechanism insight

机译:合理构建新型2D / 2D WO3 / PT / G-C3N4肖特基 - 欧姆结朝向高效可见光光催化氢气演化及机理洞察力

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Effectively separating photo-generated charge carriers is usually important but difficult for the highactivity photocatalysis. Fabricating 2D/2D Schottky-Ohmic junction is more beneficial to the spatial separation and transfer of photo-induced charges at the interface of different components due to the matching of distinct two-dimension structure and band alignment, but the manipulation and mastery of junction type (Schottky-Ohmic junction and Z-scheme junction) and electronic structure is an arduous task for preparing satisfactory photocatalysts and investigating the PHE mechanism. In this work, the 2D/2D WO3/Pt/g-C3N4 (WPC) Schottky-Ohmic junction composite photocatalysts is formed via facile hydrothermal and photo-induced deposition method for employing to produce H-2. The optimized WPC Schottky-Ohmic junction photocatalyst exhibits remarkable photocatalytic H-2-release performance with ability to produce the amount of H-2 reaches 1299.4 mu mol upon exposure to visible light, which is about 1.2 and 11.5 times higher than that of WO3/g-C3N4/Pt (WCP) (1119.4 mu mol) and pure CN (113.2 mu mol)), respectively. This remarkable enhancement of photocatalytic performance is ascribed to: (i) Schottky-Ohmic junction can strikingly expedite spatial charge separation and elongate electron lifetime, (ii) the 2D/2D structure can shorten the charge transportation distance, (iii) Pt with rich electron density can stably adsorb H+. This work provides a successful paradigm for future fundamental research, and exquisitely designs ideal g-C3N4-based photocatalysts by simultaneously adjusting and optimizing material structure and electronic dynamics. (C) 2020 Elsevier Inc. All rights reserved.
机译:有效分离光生载流子对于高活性光催化来说是一个重要而困难的问题。由于不同的二维结构和能带排列的匹配,制作2D/2D肖特基欧姆结更有利于不同元件界面上光致电荷的空间分离和转移,但是,要制备性能良好的光催化剂和研究PHE机理,对结型(肖特基欧姆结和Z型结)和电子结构的操纵和掌握是一项艰巨的任务。本工作通过简单的水热和光诱导沉积方法制备了2D/2D WO3/Pt/g-C3N4(WPC)肖特基欧姆结复合光催化剂,用于制备H-2。优化后的WPC肖特基欧姆结光催化剂具有显著的光催化H-2释放性能,在可见光下产生H-2的量达到1299.4μmol,分别是WO3/g-C3N4/Pt(WCP)(1119.4μmol)和纯CN(113.2μmol))的1.2倍和11.5倍。这种光催化性能的显著提高归因于:(i)肖特基欧姆结可以显著加快空间电荷分离并延长电子寿命;(ii)2D/2D结构可以缩短电荷传输距离;(iii)具有丰富电子密度的铂可以稳定地吸附H+。这项工作为未来的基础研究提供了一个成功的范例,并通过同时调整和优化材料结构和电子动力学,精心设计了理想的g-C3N4基光催化剂。(C) 2020爱思唯尔公司版权所有。

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