单独一对
光电流
光催化
锑
带隙
有效质量(弹簧-质量系统)
密度泛函理论
电子
电子结构
晶体结构
电子能带结构
材料科学
化学
计算化学
化学物理
结晶学
凝聚态物理
分子
无机化学
物理
光电子学
有机化学
量子力学
催化作用
作者
Sandy Al Bacha,Sébastien Saitzek,Pascal Roussel,Marielle Huvé,Emma E. McCabe,Houria Kabbour
标识
DOI:10.1021/acs.chemmater.3c01298
摘要
The crystal structure, electronic properties, photocatalytic activity, and photocurrent response of a new antimony oxysulfide Sr2Sb2O2S3 and its oxyselenide analogue Sr2Sb2O2Se3 are presented. Both oxychalcogenides contain heteroleptic SbOQ4 units with stereochemically active 5s2 electron pairs. Our combined experimental and computational study highlights the structure–property relationships in this family of materials. By means of density functional theory calculations, we show very low effective masses for the electrons (me* = 0.191(6) and 0.163(2) m0) and holes (mh* = 0.276(2) and 0.190(2) m0) for the oxysulfide and the oxyselenide, respectively, an indication of very high mobilities. Using DFT calculations, we attribute the low effective mass values (related to the curvature of the bands) to the nature and strength of the bonding between the lone pair electrons and the anions in the studied structure compared with other structure (Sr6Cd2Sb6S10O7). We analyze the states contributing to the lone pair stereoactivity and consequently to the observed photocurrent response and photocatalytic behavior under solar irradiation. This activity, the band gap values, and the band edge positions illustrate the potential of these antimony oxychalcogenides as promising candidates for water splitting using solar energy. Our study unlocks some key features in designing oxychalcogenides with low effective masses, which are advantageous for photocatalysis.
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