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通过在TiO2纳米管阵列上进行石墨烯遮蔽工程实现对CdS光腐蚀的完美抑制,以获得高度稳定的光催化活性。

Perfect inhibition of CdS photocorrosion by graphene sheltering engineering on TiO2 nanotube array for highly stable photocatalytic activity.

作者信息

Tang Yanhong, Hu Xu, Liu Chengbin

机构信息

College of Materials Science and Engineering, Hunan University, Changsha 410082, P. R. China.

出版信息

Phys Chem Chem Phys. 2014 Dec 14;16(46):25321-9. doi: 10.1039/c4cp04057k. Epub 2014 Oct 22.

Abstract

An artful graphene sheltering engineering onto TiO2 nanotube array for perfect inhibition of CdS photocorrosion (RGO/CdS-TiO2 NT) has been developed by a one-step electrodeposition method. The CdS photocorrosion driven by both holes and radicals has been systematically investigated and identified. The RGO layer provides a perfect protection to CdS through (i) blocking the attack of active species especially ˙OH radicals and (ii) offering a closed electron-rich microenvironment where the stored electrons RGO(e(-)) not only reduce intermediate species S˙(-) to S(2-) but also compensate the valence band of CdS for its loss of electrons to alleviate CdS photocorrosion from oxidation by holes. The photocatalyst exhibits extremely high stability. RGO/CdS-TiO2 NT shows high visible-light photocatalytic activity for the degradations of organic dye methylene blue (MB), industrial chemical p-nitrophenol (PNP) and herbicide 2,4-dichlorophenoxyacetic acid (2,4-D). This work provides a new insight into the protection of photosensitive semiconductors from photocorrosion.

摘要

通过一步电沉积法,已开发出一种巧妙的石墨烯包覆工程技术,将其应用于二氧化钛纳米管阵列,以完美抑制硫化镉光腐蚀(RGO/CdS-TiO2 NT)。对由空穴和自由基驱动的硫化镉光腐蚀进行了系统研究并确定。还原氧化石墨烯层通过以下方式为硫化镉提供完美保护:(i)阻止活性物种尤其是˙OH自由基的攻击;(ii)提供一个封闭的富电子微环境,其中储存的电子RGO(e(-))不仅将中间物种S˙(-)还原为S(2-),还补偿硫化镉价带中失去的电子,以减轻硫化镉因空穴氧化而产生的光腐蚀。该光催化剂表现出极高的稳定性。RGO/CdS-TiO2 NT对有机染料亚甲基蓝(MB)、工业化学品对硝基苯酚(PNP)和除草剂2,4-二氯苯氧乙酸(2,4-D)的降解显示出高可见光光催化活性。这项工作为保护光敏半导体免受光腐蚀提供了新的见解。

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