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Charge transfer behaviors over MOF-5@g-C3N4 with NixMo1-xS2 modification

机译:NixMo1-xS2修饰的MOF-5@g-C3N4电荷转移行为

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摘要

The composite photocatalyst NixMo1-xS2/MOF-5@g-C3N4 was successfully synthesized by means of hydrothermal with two step methods and the effective photocatalytic activity improvement was obtained. With the introduction of NixMo1-xS2, the H-2 production reached the maximum about 319 mu mol under continuous visible light irradiation for 5 h, which was 30 times higher than that of pure g-C3N4 photocatalyst. A series of characterization results shown that the MOF-5@g-C3N4 on the surface of NixMo1-xS2 provided the more active sites and improved the efficiency of photo-generated charge separation with SEM, XRD, TEM, EDX, XPS, UV-vis DRS, BET, FTIR, transient fluorescence and electrochemistry etc. and the results of which were in good mutual corresponding with each other. Furthermore, the reaction mechanism over the compound catalyst NixMo1-xS2/MOF-5@g-C3N4 was proposed. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:采用水热法和两步法成功合成了复合光催化剂NixMo1-xS2/MOF-5@g-C3N4,获得了有效的光催化活性提升。随着NixMo1-xS2的引入,在连续可见光照射下,H-2的产量达到最大约319 μ mol,比纯g-C3N4光催化剂高30倍。一系列表征结果表明,NixMo1-xS2表面的MOF-5@g-C3N4提供了更多的活性位点,提高了光生电荷分离效率,包括SEM、XRD、TEM、EDX、XPS、UV-vis DRS、BET、FTIR、瞬态荧光和电化学等,其结果相互对应性良好。此外,还提出了化合物催化剂NixMo1-xS2/MOF-5@g-C3N4的反应机理。(C) 2018 Hydrogen Energy Publications LLC. 由 Elsevier Ltd. 出版。保留所有权利。

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