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用于太阳能燃料生产的有机聚合物纳米光催化剂的制备、表征、评估及机理研究

Preparation, characterization, evaluation and mechanistic study of organic polymer nano-photocatalysts for solar fuel production.

作者信息

Pavliuk Mariia V, Wrede Sina, Liu Aijie, Brnovic Andjela, Wang Sicong, Axelsson Martin, Tian Haining

机构信息

Department of Chemistry, Ångström Laboratory, Uppsala University, Box 523, 75120 Uppsala, Sweden.

出版信息

Chem Soc Rev. 2022 Aug 15;51(16):6909-6935. doi: 10.1039/d2cs00356b.

Abstract

Production of renewable fuels from solar energy and abundant resourses, such as water and carbon dioxide, photocatalytic reactions is seen as a promising strategy to adequately address the climate challenge. Photocatalytic systems based on organic polymer nanoparticles (PNPs) are seen as one avenue to transform solar energy into hydrogen and other solar fuels. Semiconducting PNPs are light-harvesting materials with exceptional optical properties, photostability, low cost and low cytotoxity, whose performance surpasses conventional organic dyes and inorganic semiconductors. This review introduces the optimization strategies for the preparation methods of PNP cocatalyst loading and morphology tuning. We present an analysis on how the preparative methods will impact the physico-chemical properties of these materials, and thus the catalytic activity. A list of experimental techniques is presented for characterization of the physico-chemical properties (optical, morphological, electrochemical and catalytic properties) of PNPs. We provide detailed analysis of PNP photochemistry during photocatalysis with focus on the mechanistic understanding of processes of internal charge generation and transport to the catalyst. This tutorial review provides the reader with the guidelines on current strategies used to optimize PNP performance highlighting the future directions of polymer nano-photocatalysts development.

摘要

利用太阳能以及水和二氧化碳等丰富资源通过光催化反应生产可再生燃料,被视为充分应对气候挑战的一种有前景的策略。基于有机聚合物纳米颗粒(PNP)的光催化系统被视为将太阳能转化为氢气和其他太阳能燃料的一条途径。半导体PNP是具有卓越光学性能、光稳定性、低成本和低细胞毒性的光捕获材料,其性能优于传统有机染料和无机半导体。本综述介绍了PNP助催化剂负载制备方法和形貌调控的优化策略。我们分析了制备方法如何影响这些材料的物理化学性质,进而影响催化活性。列出了用于表征PNP物理化学性质(光学、形态、电化学和催化性质)的实验技术。我们详细分析了光催化过程中的PNP光化学,重点是对内部电荷产生和传输到催化剂过程的机理理解。本指导性综述为读者提供了用于优化PNP性能的当前策略指南,突出了聚合物纳米光催化剂发展的未来方向。

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