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Interfacial Charge Transfer in MoS2/TiO2 Heterostructured Photocatalysts: The Impact of Crystal Facets and Defects

机译:MoS2 / TiO2异质结构光催化剂中的界面电荷转移:晶体刻面和缺陷的影响

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摘要

One of the most challenging issues in photocatalytic hydrogen evolution is to efficiently separate photocharge carriers. Although MoS2 loading could effectively improve the photoactivity of TiO2, a fundamental understanding of the charge transfer process between TiO2 and MoS2 is still lacking. Herein, TiO2 photocatalysts with different exposed facets were used to construct MoS2/TiO2 heterostructures. XPS, ESR, together with PL measurements evidenced the Type II electron transfer from MoS2 to {001}-TiO2. Differently, electron-rich characteristic of {101}-faceted TiO2 were beneficial for the direct Z-scheme recombination of electrons in TiO2 with holes in MoS2. This synergetic effect between facet engineering and oxygen vacancies resulted in more than one order of magnitude enhanced hydrogen evolution rate. This finding revealed the elevating mechanism of constructing high-performance MoS2/TiO2 heterojunction based on facet and defect engineering.
机译:光催化氢释放中最具挑战性的问题之一是有效分离光电荷载流子。尽管MoS2的负载可以有效地提高TiO2的光活性,但是仍然缺乏对TiO2和MoS2之间的电荷转移过程的基本了解。在此,使用具有不同暴露面的TiO 2光催化剂来构建MoS 2 / TiO 2异质结构。 XPS,ESR和PL测量结果证明了II型电子从MoS2到{001} -TiO2的转移。与此不同,{101}面TiO2的富电子特性有利于TiO2中的电子与MoS2中的空穴直接Z重组。刻面工程和氧空位之间的这种协同作用导致氢气析出速率提高了一个数量级以上。这一发现揭示了基于刻面和缺陷工程构建高性能MoS2 / TiO2异质结的提升机制。

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