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Enhanced Photocatalytic Hydrogen Production of the Polyoxoniobate Modified with RGO and PPy

机译:用RGO和PPY改性的聚氧橡胶的增强光催化氢气产生

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摘要

The development of high-efficiency, recyclable, and inexpensive photocatalysts for water splitting for hydrogen production is of great significance to the application of solar energy. Herein, a series of graphene-decorated polyoxoniobate photocatalysts Nb6/PPy-RGO (Nb6 = K7HNb6O19, RGO = reduced graphene oxide, PPy = polypyrrole), with the bridging effect of polypyrrole were prepared through a simple one-step solvothermal method, which is the first example of polyoxoniobate-graphene-based nanocomposites. The as-fabricated photocatalyst showed a photocatalytic H2 evolution activity without any co-catalyst. The rate of 1038 µmol g−1 in 5 h under optimal condition is almost 43 times higher than that of pure K7HNb6O19·13H2O. The influencing factors for photocatalysts in photocatalytic hydrogen production under simulated sunlight were studied in detail and the feasible mechanism is presented in this paper. These results demonstrate that Nb6O19 acts as the main catalyst and electron donor, RGO provides active sites, and PPy acted as an electronic bridge to extend the lifetime of photo-generated carriers, which are crucial factors for photocatalytic H2 production.
机译:用于氢生产的水分裂的高效,可再循环和廉价的光催化剂的开发是对太阳能的应用具有重要意义。在此,通过简单的一步溶解的方法制备了一系列石墨烯装饰的聚氧二氢盐光催化剂Nb6 / ppy-rgo(Nb6 = K7hnb6O19,Rgo = =氧化吡咯),通过简单的单步溶液方法制备滤萘罗尔的桥接效果。聚氧橡胶 - 石墨烯基纳米复合材料的第一实例。制造的光催化剂显示光催化H2进化活性,无需任何助催化剂。最佳条件下5小时的1038μmolG-1的速率几乎高于纯K7HNB6O19·13H2O的43倍。详细研究了模拟阳光下的光催化氢气产生的光催化剂的影响因素,并提出了可行的机理。这些结果表明,Nb6O19作为主要催化剂和电子供体,Rgo提供活性位点,并且PPY用作电子桥以延长光催化H2生产的寿命。

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