Qiao Man, Liu Jie, Wang Yu, Li Yafei, Chen Zhongfang
Jiangsu Collaborative Innovation Centre of Biomedical Functional Materials, School of Chemistry and Materials Science , Nanjing Normal University , Nanjing 210023 , China.
Department of Chemistry , University of Puerto Rico , Rio Piedras Campus , San Juan , PR 00931 , United States.
J Am Chem Soc. 2018 Sep 26;140(38):12256-12262. doi: 10.1021/jacs.8b07855. Epub 2018 Sep 12.
Direct production of H from photocatalytic water splitting is a potential solution to environmental pollution and energy crisis, and tremendous efforts have been made to seek efficient photocatalysts that can split pure water (pH = 7) under visible light irradiation. Herein, by means of systematic density functional theory (DFT) computations, we demonstrated that the two-dimensional (2D) PdSeO monolayer is a promising candidate. The mechanical exfoliation of PdSeO monolayer from its bulk phase is experimentally feasible due to the rather small cleavage energy of ∼0.42 J/m. Remarkably, PdSeO monolayer is semiconducting with a moderate indirect band gap of 2.84 eV, and its valence and conduction bands perfectly engulf the redox potentials of water. In particular, water oxidation and hydrogen reduction half reactions can both occur readily on the different active sites of PdSeO monolayer under the potentials solely provided by photogenerated electrons and holes. As PdSeO monolayer also has rather pronounced optical absorption in the visible and ultraviolet regions of the solar spectrum, it could be utilized as a highly efficient photocatalyst for splitting pure water into H and O in a stoichiometric amount of 2:1 without using sacrificial reagents or cocatalysts.
通过光催化水分解直接制氢是解决环境污染和能源危机的一种潜在方法,人们已付出巨大努力来寻找能在可见光照射下分解纯水(pH = 7)的高效光催化剂。在此,通过系统的密度泛函理论(DFT)计算,我们证明二维(2D)PdSeO单层是一个有前景的候选材料。由于其相当小的约0.42 J/m的解理能,从体相机械剥离出PdSeO单层在实验上是可行的。值得注意的是,PdSeO单层是半导体,具有2.84 eV的适中间接带隙,其价带和导带完美地涵盖了水的氧化还原电位。特别地,在仅由光生电子和空穴提供的电位下,水氧化和氢还原半反应都能在PdSeO单层的不同活性位点上轻松发生。由于PdSeO单层在太阳光谱的可见光和紫外区域也有相当显著的光吸收,它可被用作高效光催化剂,在不使用牺牲试剂或助催化剂的情况下将纯水按化学计量比2:1分解为H和O。