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Spatial separation of photo-generated electron-hole pairs in BiOBr/BiOI bilayer to facilitate water splitting

机译:BiOBr / BiOI双层中光生电子-空穴对的空间分离以利于水分解

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摘要

The electronic structures and photocatalytic properties of bismuth oxyhalide bilayers (BiOX1/BiOX2, X1 and X2 are Cl, Br, I) are studied by density functional theory. Briefly, their compositionally tunable bandgaps range from 1.85 to 3.41 eV, suitable for sun-light absorption, and all bilayers have band-alignments good for photocatalytic water-splitting. Among them, heterogeneous BiOBr/BiOI bilayer is the best as it has the smallest bandgap. More importantly, photo-excitation of BiOBr/BiOI leads to electron supply to the conduction band minimum with localized states belonging mainly to bismuth of BiOBr where the H+/H2 half-reaction of water-splitting can be sustained. Meanwhile, holes generated by such photo-excitation are mainly derived from the iodine states of BiOI in the valence band maximum; thus, the O2/H2O half-reaction of water splitting is facilitated on BiOI. Detailed band-structure analysis also indicates that this intriguing spatial separation of photo-generated electron-hole pairs and the two half-reactions of water splitting are good for a wide photo-excitation spectrum from 2–5 eV; as such, BiOBr/BiOI bilayer can be an efficient photocatalyst for water-splitting, particularly with further optimization of its optical absorptivity.
机译:通过密度泛函理论研究了卤化铋铋双层薄膜(BiOX1 / BiOX2,X1和X2为Cl,Br,I)的电子结构和光催化性能。简而言之,它们的组成可调带隙在1.85至3.41eeV的范围内,适合吸收太阳光,并且所有双层都具有良好的能带排列,适合光催化水分解。其中,异质BiOBr / BiOI双层是最好的,因为它的带隙最小。更重要的是,BiOBr / BiOI的光激发导致电子供应至导带最小,其局部状态主要属于BiOBr的铋,其中水分解的H + / H2半反应为持续。同时,由这种光激发产生的空穴主要来自价带最大处的BiOI的碘态。因此,BiOI促进了水分解的O2 / H2O半反应。详细的能带结构分析还表明,这种有趣的光生电子-空穴对的空间分离和水分裂的两个半反应对于2-5 eV的宽光激发光谱是有益的。因此,BiOBr / BiOI双层可以是一种有效的水分解光催化剂,尤其是可以进一步优化其光学吸收率。

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