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Review of synergistic photo-thermo-catalysis: Mechanisms, materials and applications

机译:协同光热催化评论:机制,材料和应用

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Solar energy is potentially the most promising type of renewable energy for large-scale utilization in the future, thus maximizing the use of solar energy has long been long pursued. Photo-thermo-catalysis (PTC) has presented a novel strategy that could utilize the full-spectrum sunlight to stimulate the synergy between photocatalysis (PC) and thermo-catalysis (TC), which not only achieves high utilization efficiency of solar energy but also minimizes the energy consumption compared to sole PC and TC. This review strives to give a comprehensive overview of major advances of PTC. It starts with the fundamental mechanisms of PTC categorized by either heating mode (local and global) or photo-thermal synergic mode (thermal-assisted photocatalysis, photo-assisted thermocatalysis, photo-driven thermocatalysis and photo-thermal co-catalysis). Then, various photo-thermal materials are illustrated, including metals, semiconductors, carbon materials, etc. After that, we focus on the diverse applications of PTC, specifically in the fields of energy (CO2 reduction and H-2 evolution), environment (VOCs and 4-NP degradations) and organic synthesis (Suzuki coupling and cyclocondensation reactions). Special emphasis is placed on the synergism of photo and thermal effect that leads to enhanced catalytic performances in PTC. Finally, the challenges and perspectives of PTC are discussed. We hope this review could shed some light on the fundamental mechanisms of PTC reactions and serve as a clearer guidance for synergistically high-efficient solar energy utilization systems in the future. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:太阳能是未来大规模利用的最有希望的可再生能源类型,从而最大限度地利用太阳能长期以来一直追求。光热催化(PTC)提出了一种新的策略,可以利用全谱阳光来刺激光催化(PC)和热催化(TC)之间的协同作用,这不仅实现了太阳能的高利用率,而且与鞋底PC和TC相比,最小化能量消耗。这方面致力于全面概述PTC的主要进步。它从加热模式(本地和全局)或光热协同模式(热辅助光催化,光辅热分析,光驱动热致沉积和光热共催化)开始分类PTC的基本机制。然后,示出了各种光热材料,包括金属,半导体,碳材料等之后,我们专注于PTC的多样化应用,特别是在能量领域(CO2还原和H-2演化),环境( VOCS和4-NP降解)和有机合成(Suzuki偶联和环己烷反应)。特别强调的照片和热效应的协同作用,导致PTC中增强催化性能。最后,讨论了PTC的挑战和观点。我们希望这篇审查能够阐明PTC反应的基本机制,并成为未来协同高效太阳能利用系统的更清晰的指导。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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