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Bismuth Vanadate with Electrostatically Anchored 3D Carbon Nitride Nano-networks as Efficient Photoanodes for Water Oxidation

机译:铋钒酸盐用静电锚定的3D碳氮化纳米网络,作为水氧化的有效光电彩色

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摘要

In this study, we report a photoanode consisting of a polymeric/inorganic nanojunction between novel nanostructured 3D C3N4 nano-networks and BiVO4 substrate. This nanojunction is formed such that 3D C3N4 nano-networks with a positively charged surface are efficiently anchored on the BiVO4 photoanode with a negatively charged surface. This electrostatic self-assembly can initiate and contribute to an intimate contact at the interfaces, leading to an enhanced photoelectrochemical activity and stability compared with that fabricated by non-electrostatic assembly. The C3N4 nano-network/BiVO4 photoanode achieved a remarkable photocurrent density of 4.87 mAcm(-2) for water oxidation at 1.23V (vs. reversible hydrogen electrode) after depositing FeOOH/NiOOH as oxygen-evolution co-catalyst, which is among the highest photocurrent densities reported so far for BiVO4-based photoanodes.
机译:在本研究中,我们报告了一种由新型纳米结构3D C3N4纳米网络和BiVo4基板之间的聚合物/无机纳米功能组成的光电峰。 形成该纳米功能,使得具有带正电荷表面的3D C3N4纳米网络是有效地锚固在BIVO4光电表面上的带负电的表面。 该静电自动组装可以在接口处引发并有助于互联接触,导致与非静电组件制造的相比增强的光电化学活性和稳定性。 C3N4纳米网络/ BIVO4光电码可实现4.87mmm(-2)的显着光电流密度,用于在沉积FeOOH / NiOOH作为氧 - 进化助催化剂后在1.23V(与可逆氢电极)下的水氧化,这是其中 到目前为止报告的最高光电流密度为基于Bivo4的光电码。

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