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Enhanced photoelectrochemical water splitting performance using morphology-controlled BiVO4 with W doping

机译:W掺杂与形态控制BiVO4增强光电化学水分解性能

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摘要

Nanostructures exhibit numerous merits to improve the efficiency in solar-to-energy conversion. These include shortened carrier collection pathways, an increased volume ratio between depletion layer and bulk, enhanced light capture due to multiple light scattering in nanostructures, and a high surface area for photochemical conversion reactions. In this study, we describe the synthesis of morphology-controlled W-doped BiVO4 by simply tuning the solvent ratio in precursor solutions. Planar and porous W-doped BiVO4 thin films were prepared and compared. The porous film, which exhibits increased surface area and enhanced light absorption, has displayed enhanced charge separation and interfacial charge injection. Our quantitative analysis showed an enhancement of about 50% of the photoelectrochemical performance for the porous structure compared to the planar structure. This enhancement is attributed to improved light absorption (13% increase), charge separation (14% increase), and interfacial charge injection (20% increase).
机译:纳米结构具有许多优点,可以提高太阳能转化为能源的效率。这些包括缩短的载流子收集路径,增加的耗尽层与体积之间的体积比,由于纳米结构中的多次光散射而增强的光捕获以及用于光化学转化反应的高表面积。在这项研究中,我们通过简单地调整前体溶液中的溶剂比率来描述形态控制的W掺杂BiVO4的合成。制备并比较了平面和多孔的W掺杂BiVO4薄膜。表现出增加的表面积和增强的光吸收的多孔膜显示出增强的电荷分离和界面电荷注入。我们的定量分析表明,与平面结构相比,多孔结构的光电化学性能提高了约50%。这种增强归因于改善的光吸收(增加了13%),电荷分离(增加了14%)和界面电荷注入(增加了20%)。

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