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Double-shelled hollow rods assembled from nitrogen/sulfur-codoped carbon coated indium oxide nanoparticles as excellent photocatalysts

机译:由氮/硫共掺杂的碳包覆的氧化铟纳米粒子组装而成的双壳空心棒作为出色的光催化剂

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摘要

Excellent catalytic activity, high stability and easy recovery are three key elements for fabricating efficient photocatalysts, while developing a simple method to fabricate such photocatalysts with these three features at the same time is highly challenging. In this study, we successfully synthesized double-shelled hollow rods (DHR) assembled by nitrogen (N) and sulfur (S)-codoped carbon coated indium(III) oxide (In2O3) ultra-small nanoparticles (N,S-C/In2O3 DHR). N,S-C/In2O3 DHR exhibits remarkable photocatalytic activity, high stability and easy recovery for oxidative hydroxylation reaction of arylboronic acid substrates. The catalyst recovery and surface area were well balanced through improved light harvesting, contributed by concurrently enhancing the reflection on the outer porous shell and the diffraction in the inside double-shelled hollow structure, and increased separation rate of photogenerated carriers. Photocatalytic mechanism was investigated to identify the main reactive species in the catalytic reactions. The electron separation and transfer pathway via N,S-codoped graphite/In2O3 interface was revealed by theoretical calculations.
机译:优异的催化活性,高稳定性和易于回收是制造高效光催化剂的三个关键要素,而开发同时具有这三个特征的光催化剂的简单方法是极富挑战性的。在这项研究中,我们成功地合成了由氮(N)和硫(S)掺杂的碳包覆的氧化铟(III)(In2O3)超小纳米颗粒(N,SC / In2O3 DHR)组装而成的双壳空心棒(DHR) 。 N,S-C / In2O3 DHR对芳基硼酸底物的氧化羟基化反应具有显着的光催化活性,高稳定性和易于回收的特点。催化剂的回收率和表面积通过改善光的收集得到了很好的平衡,这是由于同时增强了对多孔多孔壳的反射和内部双壳中空结构的衍射,并提高了光生载流子的分离率。研究了光催化机理以识别催化反应中的主要反应物种。通过理论计算揭示了通过N,S共掺杂的石墨/ In 2 O 3界面的电子分离和转移途径。

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