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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A Zn: BiVO4/ Mo: BiVO4 homojunction as an efficient photoanode for photoelectrochemical water splitting
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A Zn: BiVO4/ Mo: BiVO4 homojunction as an efficient photoanode for photoelectrochemical water splitting

机译:A ZN:Bivo4 / Mo:Bivo4同性恋作为光电化学水分裂的有效光电码

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Photoelectrochemical (PEC) water splitting has been extensively studied as a method to convert sunlight and water to hydrogen. Among the many obstacles facing PEC water splitting, a critical challenge is the lack of efficient photoanodes for the water oxidation reaction. Here, we report an n-n(+) type-II homojunction of Zn:BiVO4/Mo:BiVO4, which improves the bulk transport and surface charge transfer processes of the well-studied BiVO4 photoanode. In this homojunction, the Zn and Mo dopants move the BiVO4 valence band maximum and conduction band minimum, respectively, closer to the Fermi level, establishing an n-n(+) type-II homojunction. The staggered band alignment between Zn:BiVO4 and Mo:BiVO4 facilitates electron-hole separation between the two layers. The Mo dopant increases the donor concentration, leading to higher electrical conductivity. The Zn dopant increases the number of oxygen chemisorption sites, improving the interfacial charge transfer process. With additional deposition of the oxygen evolution electrocatalyst Ni:FeOOH, the homojunction achieves charge transport and transfer efficiencies of 65% and 89%, respectively. The final Ni:FeOOH/Zn:BiVO4/Mo:BiVO4 photoanode achieves a photocurrent density of 2.7 mA cm(-2) and a faradaic efficiency for oxygen evolution of approximate to 92% at 1.23 V vs. RHE in the electrolyte of potassium buffer solution (pH approximate to 7).
机译:广泛研究了光电化学(PEC)水分裂作为将阳光和水转化为氢的方法。在佩奇水分裂面临的许多障碍中,临界挑战是缺乏用于水氧化反应的有效光池。在这里,我们报告了Zn:Bivo4 / Mo:Bivo4的N-N(+)II型同工结,其改善了钻孔的BIVO4光电码的散装传输和表面电荷转移过程。在这种同性恋中,Zn和Mo掺杂剂分别将BIVO4价带最大和导通带最小,更接近FERMI水平,建立N-N(+)II型同工结。 Zn:Bivo4和Mo之间的交错带对准:Bivo4有助于两层之间的电子空穴分离。莫掺杂剂增加了供体浓度,导致电导率较高。 Zn掺杂剂增加了氧气化学吸附位点的数量,改善了界面电荷转移过程。随着氧气进化电催化剂的额外沉积Ni:FeoOH,同质结分别实现了65%和89%的电荷运输和转移效率。最终NI:FEOOH / ZN:BIVO4 / MO:BIVO4 PhotoNode达到2.7 mA cm(-2)的光电流密度,含氧效率为钾缓冲液电解质中的1.23V与rhe近似为92%的氧化效率溶液(pH近似为7)。

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