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Fabrication of porous nanoflake BiMOx (M = W V and Mo) photoanodes via hydrothermal anion exchange

机译:通过水热阴离子交换制备多孔纳米薄片BiMOx(M = WV和Mo)光阳极

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摘要

Most Bi-based photoelectrodes have suitable band gaps and can effectively promote the water oxidation reaction. However, simple preparation methods for Bi-based binary metal oxides as photoanodes are scarce. This paper describes a simple hydrothermal anion exchange method to synthesize Bi-based binary metal oxides with controlled morphologies. This synthesis process uses BiOI as the template and Bi source, which is eventually converted to Bi-based porous nanoflake photoanodes upon reaction with MOx (M = W, V, and Mo)-containing precursors. The photoanodes show well-shaped porous nanoflake morphologies and exhibit impressive photoelectrochemical properties compared to Bi-based photoanodes synthesized by conventional methods. These three samples possess long-term stability under solar irradiation and show considerable photocurrent for sulfite oxidation.
机译:大多数Bi基光电极具有合适的带隙并且可以有效地促进水氧化反应。然而,用于Bi基二元金属氧化物作为光阳极的简单制备方法是稀缺的。本文描述了一种简单的水热阴离子交换方法,以合成形态可控的Bi基二元金属氧化物。此合成过程使用BiOI作为模板和Bi源,当与含MOx(M = W,V和Mo)的前体反应时,Bi源最终转化为基于Bi的多孔纳米片状光阳极。与通过常规方法合成的基于Bi的光阳极相比,该光阳极显示出良好的多孔纳米薄片形貌并显示出令人印象深刻的光电化学特性。这三个样品在阳光照射下具有长期稳定性,并显示出可观的亚硫酸盐氧化光电流。

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