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首页> 外文期刊>International journal of hydrogen energy >One-step synthesis of configurational-entropy In-doped Zn(O,S)/Zn-doped In(OH)_(3-x)S_x composite for visible-light photocatalytic hydrogen evolution reaction
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One-step synthesis of configurational-entropy In-doped Zn(O,S)/Zn-doped In(OH)_(3-x)S_x composite for visible-light photocatalytic hydrogen evolution reaction

机译:(OH)_(3-X)S_x复合物中的一步合成掺杂型掺杂型掺杂型掺杂型(O,S)/ Zn掺杂,用于可见光光催化氢气进化反应

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Configurational entropy composites of In-doped Zn(O,S)/Zn-doped In(OH) S-3-x(x) has been synthesized with a one-step hydrothermal method and carefully characterized with XRD, XPS, SEM, TEM, DRS, PL, EIS, TPC, CV, and MS analyses. The composites were prepared with different sulfur amounts to obtain the optimum performance of visible-light photocatalytic HER. The primary phases of ZnS and In(OH)(3) were formed after the hydrothermal process. However, the results indicated In and O were doped into ZnS lattice and induced lower bandgap values (similar to 2.71-2.84 eV) which are active in visible-light illumination. Simultaneously, the excess Zn and S were also doped to In(OH) 3 with lower bandgap values (similar to 3.38-4.63 eV). The variation of bandgap values is due to the hybridization of In 5s5p to Zn 4s4p and O 2p to S 3p orbitals. As a result, In-doped Zn(O,S) and Zn-doped In(OH)(3-x)S-x will be a visible-light active material for photoreaction and a favorable phase for electron transfer, respectively. Furthermore, it is also related to a possible antisite-defect formation with Inthorn Zn to help the electron trapping and enhance the photocarrier separation, leading to an efficient photocatalytic activity. ZI-S1 with additional 5-mmol thioacetamide was found as the catalyst with the highest HER performance which achieved 730 mmol/g.h under visible-light illumination. A plausible photocatalytic HER mechanism is discussed and proposed in this work. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:(OH)S-3-X(X)中的掺杂型Zn(O,S)/ Zn掺杂的配置熵复合材料已经用一步水热法合成,并用XRD,XPS,SEM,TEM仔细表征,DRS,PL,EIS,TPC,CV和MS分析。用不同的硫制备复合材料,以获得可见光光催化催化剂的最佳性能。在水热过程后形成ZnS和(OH)(3)的初级相。然而,所示的结果和o被掺杂到Zns晶格中并诱导在可见光照射中有效的下带隙值(类似于2.71-2.84eV)。同时,过量的Zn和S也掺杂到(OH)3中,具有较低的带隙值(类似于3.38-4.63eV)。带隙值的变化是由于5S5P到Zn 4S4P和O 2P至S 3P轨道的杂交。结果,掺杂的Zn(O,S)和Zn-掺杂(OH)(3-x)S-X将是用于光反应的可见光活性材料,以及电子转移的有利相。此外,它还与具有inthorn Zn的可能的防易缺陷形成有关,以帮助电子捕获并增强光载体分离,导致有效的光催化活性。 Zi-S1具有另外的5mmol硫代乙酰胺作为催化剂,其性能最高,可在可见光照射下实现730mmol / g.h。在这项工作中讨论并提出了一种合理的光催化她的机制。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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