Ma Hao, Wang Zhengjie, Zhao Wen, Ren Hao, Zhu Houyu, Chi Yuhua, Guo Wenyue
School of Materials Science and Engineering, China University of Petroleum (East China), Qingdao 266580, Shandong China.
J Phys Chem Lett. 2022 Sep 15;13(36):8484-8494. doi: 10.1021/acs.jpclett.2c02189. Epub 2022 Sep 2.
Two-dimensional heterostructure manipulation is promising to overcome the high recombination rates and limited redox abilities of photogenerated electron-hole pairs in a single photocatalyst. The built-in electric field () in the type-II heterojunction is normally unfavorable for the desired charge transfer, which is an important but easily neglected issue that needs to be solved. Here, on the basis of the density functional theory (DFT) and the nonadiabatic molecular dynamics (NAMD) calculations, we obtain a type-II band alignment in Janus-MoSSe/WS heterostructure, which meets the band-edge position requirement for water splitting. Importantly, the intrinsic self-build electric field () of Janus-MoSSe can effectively weaken the hindrance effect of for charge transfer by constructing a suitable Se-S stacking configuration, improving charge separation efficiency in the Janus-MoSSe/WS heterostructure. Our work provides a materials-by-design paradigm and interlayer charge-transfer dynamics understanding of heterostructure engineering against asymmetric structures lacking reflection symmetry.
二维异质结构调控有望克服单一光催化剂中光生电子 - 空穴对的高复合率和有限的氧化还原能力。II型异质结中的内建电场通常不利于所需的电荷转移,这是一个重要但容易被忽视且需要解决的问题。在此,基于密度泛函理论(DFT)和非绝热分子动力学(NAMD)计算,我们在Janus - MoSSe/WS异质结构中获得了II型能带排列,其满足水分解的能带边缘位置要求。重要的是,Janus - MoSSe的固有自构建电场可以通过构建合适的Se - S堆叠构型有效削弱内建电场对电荷转移的阻碍作用,提高Janus - MoSSe/WS异质结构中的电荷分离效率。我们的工作提供了一种按设计选材的范例以及对缺乏反射对称性的不对称结构异质结构工程的层间电荷转移动力学理解。