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揭示光催化的奇迹:用于环境修复和能量收集的太阳能异质结的最新进展。

Unveiling the photocatalytic marvels: Recent advances in solar heterojunctions for environmental remediation and energy harvesting.

机构信息

Department of Chemical Engineering, Process and Environmental Technology Lab, KU Leuven, De Nayerlaan 5 Sint-Katelijne-Waver, 2860, Belgium.

Department of Plastics Engineering, UMass Lowell, Lowell, MA 01851, USA.

出版信息

J Environ Sci (China). 2025 Feb;148:283-297. doi: 10.1016/j.jes.2024.01.006. Epub 2024 Jan 19.

Abstract

In the quest for effective solutions to address Environ. Pollut. and meet the escalating energy demands, heterojunction photocatalysts have emerged as a captivating and versatile technology. These photocatalysts have garnered significant interest due to their wide-ranging applications, including wastewater treatment, air purification, CO capture, and hydrogen generation via water splitting. This technique harnesses the power of semiconductors, which are activated under light illumination, providing the necessary energy for catalytic reactions. With visible light constituting a substantial portion (46%) of the solar spectrum, the development of visible-light-driven semiconductors has become imperative. Heterojunction photocatalysts offer a promising strategy to overcome the limitations associated with activating semiconductors under visible light. In this comprehensive review, we present the recent advancements in the field of photocatalytic degradation of contaminants across diverse media, as well as the remarkable progress made in renewable energy production. Moreover, we delve into the crucial role played by various operating parameters in influencing the photocatalytic performance of heterojunction systems. Finally, we address emerging challenges and propose novel perspectives to provide valuable insights for future advancements in this dynamic research domain. By unraveling the potential of heterojunction photocatalysts, this review contributes to the broader understanding of their applications and paves the way for exciting avenues of exploration and innovation.

摘要

在寻求解决环境污染物和满足不断增长的能源需求的有效方法的过程中,异质结光催化剂作为一种引人注目的多功能技术已经出现。由于其广泛的应用,包括废水处理、空气净化、CO 捕获以及通过水分解产生氢气,这些光催化剂引起了人们的极大兴趣。该技术利用半导体在光照射下的激活特性,为催化反应提供所需的能量。由于可见光构成了太阳光谱的很大一部分(46%),因此开发可见光驱动的半导体变得势在必行。异质结光催化剂提供了一种很有前途的策略,可以克服在可见光下激活半导体所面临的限制。在这篇全面的综述中,我们介绍了在不同介质中光催化降解污染物领域的最新进展,以及在可再生能源生产方面取得的显著进展。此外,我们深入探讨了各种操作参数在影响异质结系统光催化性能方面所起的关键作用。最后,我们讨论了新兴的挑战,并提出了新的观点,为这一充满活力的研究领域的未来发展提供了有价值的见解。通过揭示异质结光催化剂的潜力,本综述有助于更全面地了解其应用,并为探索和创新开辟了令人兴奋的途径。

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