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基于黑磷的光催化剂:合成、性质及应用

Black Phosphorus-based Photocatalysts: Synthesis, Properties, and Applications.

作者信息

Moradian Sahar, Badiei Alireza, Mohammadi Ziarani Ghodsi, Mohajer Fatemeh, Varma Rajender S, Iravani Siavash

机构信息

School of Chemistry, College of Science, University of Tehran, Iran.

School of Chemistry, College of Science, University of Tehran, Iran.

出版信息

Environ Res. 2023 Nov 15;237(Pt 1):116910. doi: 10.1016/j.envres.2023.116910. Epub 2023 Aug 18.

Abstract

Photocatalysis is considered as an eco-friendly and sustainable strategy, since it uses abundant light for the advancement of the reaction, which is freely accessible and is devoid of environmental pollution. During the last decades, (nano)photocatalysts have gained broad industrial applications in terms of purification and detoxification of water as well as production of green fuels and hydrogen gas due to their special attributes. The degradation or remediation of toxic and hazardous compounds from the environment or changing them into non-toxic entities is a significant endeavor and necessary for the safety of humans, animals, and the environment. Black phosphorus (BP), a two-dimensional single-element material, has a marvelous structure, tunable bandgap, changeable morphology from bulk to nanosheet/quantum dot, and unique physicochemical properties, which makes it attractive material for photocatalytic applications, especially for sustainable development purposes. Since it can serve as a photocatalyst with or without coupling with other semiconductors, various aspects for multidimensional exploitation of BP are deliberated including their preparation via solvothermal, ball milling, calcination, and sonication methods to obtain BP from red phosphorus. The techniques for improving the photocatalytic and stability of BP-based composites are discussed along with their multifaceted applications for environmental remediation, pollution degradation, water splitting, N fixation, CO reduction, bacterial disinfection, H generation, and photodynamic therapy. Herein, most recent advancements pertaining to the photocatalytic applications of BP-based photocatalyst are cogitated, with a focus on their synthesis and properties as well as crucial challenges and future perspectives.

摘要

光催化被认为是一种环保且可持续的策略,因为它利用丰富的光来推动反应进行,光资源丰富且无污染。在过去几十年中,(纳米)光催化剂因其特殊性质在水的净化和解毒以及绿色燃料和氢气生产方面获得了广泛的工业应用。从环境中降解或修复有毒有害化合物或将它们转化为无毒物质是一项重大努力,对人类、动物和环境的安全至关重要。黑磷(BP)作为一种二维单元素材料,具有奇妙的结构、可调谐的带隙、从块状到纳米片/量子点的可变形态以及独特的物理化学性质,这使其成为光催化应用中具有吸引力的材料,特别是对于可持续发展目的而言。由于它可以在与其他半导体耦合或不耦合的情况下用作光催化剂,本文探讨了BP多维开发的各个方面,包括通过溶剂热法、球磨法、煅烧法和超声法从红磷制备BP。讨论了提高BP基复合材料光催化性能和稳定性的技术,以及它们在环境修复、污染降解、水分解、固氮、CO还原、细菌消毒、H生成和光动力治疗等多方面的应用。在此,对基于BP的光催化剂的光催化应用的最新进展进行了思考,重点关注它们的合成、性质以及关键挑战和未来展望。

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