上转换复合材料在光催化中的应用研究进展

Progress in the application of upconversion composite materials in photocatalysis

  • 摘要: 本文综述了上转换复合材料在光催化中的应用研究进展。由于传统光催化半导体材料对太阳辐射利用率低,限制了其在环境治理和能源转化方面的实际应用。上转换复合材料可以将低能量辐射转化为高能量发射,提高光催化剂对红外-可见光的响应性,从而提高太阳光利用率。本文首先阐述了光催化反应的基本原理和应用前景,接着重点分析了稀土、量子点、三重态-三重态湮灭等3种类型的上转换复合光催化剂的制备方法、性能特点和优缺点,并举例介绍了利用贵金属或合金增强上转换效果和电荷分离效率的优化策略。本文旨在为光催化研究提供新思路和参考,促进上转换复合材料在光催化领域中的应用和发展。

     

    Abstract: This article provides an overview of the research progress of upconversion composite materials in photocatalysis. Due to the low utilization rate of solar radiation by traditional photocatalytic semiconductor materials, their practical application in environmental governance and energy conversion is limited. Upconversion composite materials can convert low-energy radiation into high-energy emission, improve the responsiveness of photocatalysts to infrared-visible light, and thus improve the utilization rate of solar energy. This article first elaborates on the basic principles and application prospects of photocatalytic reactions and then focuses on the preparation methods, performance characteristics, advantages, and disadvantages of three types of upconversion composite photocatalysts: Rare earth, quantum dots, and triplet-triplet annihilation. It also introduces optimization strategies that use precious metals or alloys to enhance upconversion effects and charge separation efficiency with examples. The purpose of this article is to provide new ideas and references for photocatalysis research and promote the application and development of upconversion composite materials in the field of photocatalysis.

     

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