首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Experimental and DFT insights of the Zn-doping effects on the visible-light photocatalytic water splitting and dye decomposition over Zn-doped BiOBr photocatalysts
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Experimental and DFT insights of the Zn-doping effects on the visible-light photocatalytic water splitting and dye decomposition over Zn-doped BiOBr photocatalysts

机译:Zn掺杂BioBR光催化剂可见光光催化水分解和染料分解的Zn掺杂效应的实验和DFT见解

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摘要

Synergetic experimental and DFT insights of energy band structures and photogenerated rate-limiting reactive species are indispensable to design impurity-doped photocatalysts for photocatalytic environment remediation and solar fuels. Herein, despite the larger bandgap (Eg) of the Zn-doped BiOBr samples, they exhibited superior activity to BiOBr in the photocatalytic water splitting but impaired the photodegradation of Rhodamine B under visible-light illumination. Based on the spectral and electrochemical impedance characterisations and DFT simulations, the wider bandgaps of Zn-doped BiOBr samples were explicitly assigned to the more positive valence band maxima (VBM) and more negative conduction band minima (CBM). The enhanced photocatalytic water splitting on the Zn-doped BiOBr was arisen from the higher redox chemical potentials of charge carriers on respective CBM and VBM, suppressed back reactions and depressed recombination of photogenerated charge carriers. However, the reduced e(-)-h(+) recombination on the Zn-doped BiOBr cannot cancel the detrimental influences from the weaker light absorption and dye-sensitisation effects, leading to slower RhB photodegradation.
机译:能带结构的协同实验和DFT见解和光静脉的速率限制性物质是设计用于光催化环境修复和太阳能燃料的杂质掺杂光催化剂的必由之可。这里,尽管Zn掺杂的BioBR样品的带隙(例如)具有较大的带隙(例如),但它们在光催化水分解中表现出对BioBR的优异活性,但在可见光照射下损害罗丹明B的光降解。基于光谱和电化学阻抗特征和DFT仿真,明确地分配给更阳性价带最大值(VBM)和更多负导带最小值(CBM)的更广泛的带隙。从相应CBM和VBM的较高氧化还原化学电位,抑制了背反应和光生电荷载体的抑制反应和抑制重组,从Zn掺杂BioBR上产生增强的光催化水分解。然而,Zn掺杂BioBR上的还原的E( - ) - H(+)重组不能取消来自较弱的光吸收和染料敏化效应的不利影响,导致RHB光降低。

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