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锚定基团对 p-Si/TiO/Cobaloxime 杂化光电极光电化学 H2 生产中的电荷转移和性能的影响。

Influence of Anchoring Groups on the Charge Transfer and Performance of p-Si/TiO/Cobaloxime Hybrid Photocathodes for Photoelectrochemical H Production.

机构信息

State Key Laboratory of Fine Chemicals , Dalian University of Technology , Dalian 116024 , China.

State Key Laboratory of Catalysis, Dalian National Laboratory for Clean Energy , Dalian Institute of Chemical Physics , Dalian 116023 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Sep 18;11(37):34010-34019. doi: 10.1021/acsami.9b12182. Epub 2019 Sep 9.

Abstract

Although hybrid photocathodes built by immobilizing molecular catalysts to the surface of semiconductors through chemical linkages have been reported in recent years, systematic and comparative studies remain scarce about the impact of various anchoring groups on the performance, stability, and charge-transfer kinetics of molecular catalyst-decorated hybrid photocathodes for photoelectrochemical (PEC) H production. In this study, the molecular cobaloxime catalysts, CoPy-4-X (Py = pyridine, X = POH, COOH, and CONH(OH)), bearing different anchoring groups were synthesized and covalently immobilized to the surface of the porous TiO layer coated on a p-Si plate or a fluorine-doped tin oxide glass. The influence of the anchoring groups on the performance of p-Si/TiO/CoPy-4-X photocathodes was comparatively studied for PEC H evolution. Among the tested hybrid photocathodes, the one with a hydroxamate as an anchoring group displayed higher activity and lower charge-transfer resistance than that observed for the electrode with a carboxylate or a phosphonate as the anchoring group. Notably, the catalytic current of p-Si/TiO/CoPy-4-CONH(OH) was attenuated only by 2.9% in the controlled potential photoelectrolysis tests in borate buffer solution at pH 9 at 0 V versus a reversible hydrogen electrode over 6 h. Moreover, the influence of anchoring groups on the interfacial electron transfer from the TiO layer to the immobilized cobaloxime catalyst and electron-hole recombination was studied by transient absorption spectroscopy. These results revealed that the hydroxamate as an anchoring group is superior to the carboxylate and phosphonate groups for speeding up the interfacial electron transfer and firmly immobilizing the molecular catalysts to the metal oxide semiconductors to build efficient and stable hybrid photoelectrodes.

摘要

尽管近年来通过化学键将分子催化剂固定在半导体表面的杂化光阳极已经有报道,但对于不同锚定基团对分子催化剂修饰的杂化光阳极光电化学(PEC)H2 产生性能、稳定性和电荷转移动力学的影响,仍缺乏系统和比较研究。在这项研究中,合成了带有不同锚定基团的分子钴卟啉催化剂 CoPy-4-X(Py=吡啶,X=POH、COOH 和 CONH(OH)),并将其共价固定在涂覆在 p-Si 板或掺氟氧化锡玻璃上的多孔 TiO 层表面。比较研究了不同锚定基团对 p-Si/TiO/CoPy-4-X 光阳极光电催化 H2 演化性能的影响。在所测试的杂化光阳极中,带有羟肟酸作为锚定基团的光阳极表现出比带有羧酸盐或膦酸盐作为锚定基团的光阳极更高的活性和更低的电荷转移电阻。值得注意的是,在 pH 值为 9 的硼酸缓冲溶液中,在 0 V 相对于可逆氢电极的受控电位光电解测试中,p-Si/TiO/CoPy-4-CONH(OH) 的催化电流仅衰减了 2.9%,经过 6 小时。此外,通过瞬态吸收光谱研究了锚定基团对 TiO 层向固定化钴卟啉催化剂的界面电子转移和电子-空穴复合的影响。这些结果表明,羟肟酸作为一种锚定基团,在加快界面电子转移和将分子催化剂牢固地固定在金属氧化物半导体上构建高效稳定的杂化光电阴极方面优于羧酸盐和膦酸盐。

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