Principles of Photocatalysts and Their Different Applications: A Review

IF 8.6 2区 化学 Q1 Chemistry
Mohamed A. Hassaan, Mohamed A. El-Nemr, Marwa R. Elkatory, Safaa Ragab, Violeta-Carolina Niculescu, Ahmed El Nemr
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引用次数: 0

Abstract

Human existence and societal growth are both dependent on the availability of clean and fresh water. Photocatalysis is a type of artificial photosynthesis that uses environmentally friendly, long-lasting materials to address energy and environmental issues. There is currently a considerable demand for low-cost, high-performance wastewater treatment equipment. By changing the structure, size, and characteristics of nanomaterials, the use of nanotechnology in the field of water filtration has evolved dramatically. Semiconductor-assisted photocatalysis has recently advanced to become among the most promising techniques in the fields of sustainable energy generation and ecological cleanup. It is environmentally beneficial, cost-effective, and strictly linked to the zero waste discharge principle used in industrial effluent treatment. Owing to the reduction or removal of created unwanted byproducts, the green synthesis of photoactive nanomaterial is more beneficial than chemical synthesis approaches. Furthermore, unlike chemical synthesis methods, the green synthesis method does not require the use of expensive, dangerous, or poisonous ingredients, making it a less costly, easy, and environmental method for photocatalyst synthesis. This work focuses on distinct greener synthesis techniques utilized for the production of new photocatalysts, including metals, metal doped-metal oxides, metal oxides, and plasmonic nanostructures, including the application of artificial intelligence and machine learning to the design and selection of an innovative photocatalyst in the context of energy and environmental challenges. A brief overview of the industrial and environmental applications of photocatalysts is also presented. Finally, an overview and recommendations for future research are given to create photocatalytic systems with greatly improved stability and efficiency.

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光催化剂的原理及其不同应用:综述。
人类生存和社会发展都依赖于清洁和淡水的供应。光催化是一种人工光合作用,使用环保、持久的材料来解决能源和环境问题。目前对低成本、高性能的废水处理设备有相当大的需求。通过改变纳米材料的结构、尺寸和特性,纳米技术在水过滤领域的应用发生了巨大变化。半导体辅助光催化最近已发展成为可持续能源生产和生态清洁领域最有前途的技术之一。它对环境有益,具有成本效益,并与工业废水处理中使用的零废物排放原则严格相关。由于减少或去除了产生的不需要的副产物,光活性纳米材料的绿色合成比化学合成方法更有益。此外,与化学合成方法不同,绿色合成方法不需要使用昂贵、危险或有毒的成分,使其成为一种成本较低、简单且环保的光催化剂合成方法。这项工作的重点是用于生产新型光催化剂的独特的绿色合成技术,包括金属、金属掺杂的金属氧化物、金属氧化物和等离子体纳米结构,包括在能源和环境挑战的背景下,将人工智能和机器学习应用于创新光催化剂的设计和选择。还简要介绍了光催化剂的工业和环境应用。最后,概述了未来的研究并提出了建议,以创建具有极大提高的稳定性和效率的光催化系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Topics in Current Chemistry
Topics in Current Chemistry 化学-化学综合
CiteScore
11.70
自引率
1.20%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Topics in Current Chemistry provides in-depth analyses and forward-thinking perspectives on the latest advancements in chemical research. This renowned journal encompasses various domains within chemical science and their intersections with biology, medicine, physics, and materials science. Each collection within the journal aims to offer a comprehensive understanding, accessible to both academic and industrial readers, of emerging research in an area that captivates a broader scientific community. In essence, Topics in Current Chemistry illuminates cutting-edge chemical research, fosters interdisciplinary collaboration, and facilitates knowledge-sharing among diverse scientific audiences.
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