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用于光催化/电催化的无机纳米材料的辐照介导合成与定制的最新进展。

Recent advances in irradiation-mediated synthesis and tailoring of inorganic nanomaterials for photo-/electrocatalysis.

作者信息

Huang Shoushuang, Yue Can, Uvdal Kajsa, Hu Zhangjun

机构信息

School of Environmental and Chemical Engineering, Shanghai University Shanghai 200444 China

Division of Molecular Surface Physics & Nanoscience, Department of Physics, Chemistry and Biology, Linköping University Linköping 58183 Sweden

出版信息

Nanoscale Adv. 2024 Nov 27;7(2):384-418. doi: 10.1039/d4na00806e. eCollection 2025 Jan 14.

Abstract

Photo-/electrocatalysis serves as a cornerstone in addressing global energy shortages and environmental pollution, where the development of efficient and stable catalysts is essential yet challenging. Despite extensive efforts, it's still a formidable task to develop catalysts with excellent catalytic behaviours, stability, and low cost. Because of its high precision, favorable controllability and repeatability, radiation technology has emerged as a potent and versatile strategy for the synthesis and modification of nanomaterials. Through meticulous control of irradiation parameters, including energy, fluence and ion species, various inorganic photo-/electrocatalysts can be effectively synthesized with tailored properties. It also enables the efficient adjustment of physicochemical characteristics, such as heteroatom-doping, defect generation, heterostructure construction, micro/nanostructure control, and so on, all of which are beneficial for lowering reaction energy barriers and enhancing energy conversion efficiency. This review comprehensively outlines the principles governing radiation effects on inorganic catalysts, followed by an in-depth discussion of recent advancements in irradiation-enhanced catalysts for various photo-/electrocatalytic applications, such as hydrogen and oxygen evolution reactions, oxygen reduction reactions, and photocatalytic applications. Furthermore, the challenges associated with ionizing and non-ionizing radiation are discussed and potential avenues for future development are outlined. By summarizing and articulating these innovative strategies, we aim to inspire further development of sustainable energy and environmental solutions to drive a greener future.

摘要

光催化/电催化是解决全球能源短缺和环境污染问题的基石,其中开发高效稳定的催化剂至关重要但也具有挑战性。尽管人们付出了巨大努力,但开发具有优异催化性能、稳定性和低成本的催化剂仍然是一项艰巨的任务。由于辐射技术具有高精度、良好的可控性和可重复性,它已成为一种强大且通用的纳米材料合成与改性策略。通过精确控制包括能量、通量和离子种类在内的辐照参数,可以有效地合成具有定制性能的各种无机光催化剂/电催化剂。它还能够有效地调节物理化学特性,如杂原子掺杂、缺陷生成、异质结构构建、微/纳米结构控制等,所有这些都有利于降低反应能垒并提高能量转换效率。本文综述全面概述了辐射对无机催化剂影响的原理,随后深入讨论了用于各种光催化/电催化应用(如析氢和析氧反应、氧还原反应以及光催化应用)的辐照增强催化剂的最新进展。此外,还讨论了与电离辐射和非电离辐射相关的挑战,并概述了未来发展的潜在途径。通过总结和阐述这些创新策略,我们旨在激发可持续能源和环境解决方案的进一步发展,以推动更绿色的未来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66c2/11729981/3ba48337dec6/d4na00806e-f1.jpg

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