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首页> 外文期刊>Catalysis science & technology >Construction of strontium tantalate homo-semiconductor composite photocatalysts with a tunable type II junction structure for overall water splitting
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Construction of strontium tantalate homo-semiconductor composite photocatalysts with a tunable type II junction structure for overall water splitting

机译:建设锶钽酸盐homo-semiconductor复合催化剂总体的可调II型结结构水分离

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摘要

A series of phase-controlled and composition-tuned strontium tantalate homo-semiconductor composite photocatalysts were fabricated by adjusting the initial atomic ratio of Ta/Sr precursors for synthesis. A strong correlation between the phase compositions and the photocatalytic activities for hydrogen evolution was demonstrated, which can be attributed mainly to the significantly improved photogenerated charge carrier separation via interfacial type II junctions. Without any co-catalysts, finely phase-tuned composites, namely Sr5Ta4O15/Sr2Ta2O7, Sr5Ta4O15/Sr2Ta2O7/SrTa4O11 and Sr2Ta2O7/SrTa4O11, exhibited approximately 20, 38 and 76 times, respectively, higher H2 production rates from aqueous methanol solutions than pure Sr5Ta4O15. Furthermore, by modification with a 1 wt% NiO co-catalyst, both the photocatalytic overall water splitting (OWS) activities and stabilities of the composites were remarkably improved for the simultaneous evolution of H-2 and O-2 in a nearly stoichiometric ratio. The highest activity with a corresponding photon efficiency of up to 64% was achieved for NiO deposited on Sr2Ta2O7/SrTa4O11. The study on the feasibility of the strategy for fabricating homo-semiconductor composites will open up a direction to exploit new high-performance photocatalysts for hydrogen production and OWS.
机译:一系列的相位控制和composition-tuned锶钽酸盐homo-semiconductor复合论文被调整的助教/ Sr前体的初始原子比例合成。成分与光催化活动氢进化了的可以主要归因于显著改善photogenerated电荷载体分离通过界面II型连接。co-catalysts精细phase-tuned复合材料,namely Sr5Ta4O15 / Sr2Ta2O738岁的Sr2Ta2O7 / SrTa4O11展出约20分别和76倍,高H2生产率比纯甲醇水溶液Sr5Ta4O15。wt % NiO co-catalyst,光催化整体水分裂活动和(OWS)复合材料的稳定性改进2的同步进化和0 2近化学计量比。最高的活动和相应的光子NiO的效率达到64%沉积在Sr2Ta2O7 / SrTa4O11。制造战略的可行性homo-semiconductor复合材料将会打开一个利用新的高性能的方向催化剂对氢生产和占领华尔街。

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