Facile synthesis of Pt clusters decorated TiO2 nanoparticles for efficient photocatalytic degradation of antibiotics

Author:

Pan Yin1,Liang Weizhen1,Wang Zongpeng2,Gong Junjie2,Wang Yichao1,Xu Aijiao2,Teng Zhenyuan3,Shen Shijie2ORCID,Gu Lin4,Zhong Wenwu2,Lu Hongsheng1,Chen Baofu1

Affiliation:

1. Taizhou Central Hospital (Taizhou University Hospital) Taizhou University Taizhou Zhejiang China

2. Zhejiang Key Laboratory for Island Green Energy and New Materials Taizhou University Jiaojiang Zhejiang China

3. Department of Materials Science and Engineering City University of Hong Kong Kowloon, SAE Hong Kong China

4. Department of Materials Science and Engineering, Beijing National Center for Electron Microscopy and Laboratory of Advanced Materials Tsinghua University Beijing China

Abstract

AbstractTiO2 has attracted much attention in the field of photocatalytic degradation of antibiotics due to its good photostability, nontoxicity, and low cost. However, the rapid recombination of photogenerated carriers limits the further improvement of its photocatalytic activity. Here, a facile microwave‐assisted hydrothermal method has been developed to prepare Pt clusters decorated TiO2 nanoparticles. Pt clusters ranging in size from 1 to 2 nm are uniformly distributed across the surface of the TiO2 matrix. A pronounced charge transfer phenomenon is discernible between the Pt and TiO2 components. It is revealed that the charge transfer enables faster transfer and separation of photogenerated electrons and holes, which are beneficial for the improvement of photocatalytic degradation of both ofloxacin and levofloxacin. The degradation capability can be attributed to the efficient generation of •OH or •O2 species within the solution. The parallel adsorption model of TiO2 on antibiotic molecules is verified, and the degradation reaction pathway has been elucidated. This work provides a facile method for optimizing the performance of TiO2 photocatalysts, which can be extended to other oxide photocatalysts.

Publisher

Wiley

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