State Key Laboratory of Crystal Materials, Shandong University, Jinan, 250100, P. R. China.
The Institute of Scientific and Industrial Research (SANKEN), Osaka University, Osaka, 567-0047, Japan.
Chemistry. 2018 Dec 10;24(69):18322-18333. doi: 10.1002/chem.201803705. Epub 2018 Nov 9.
Photocatalytic water splitting using solar energy has been widely studied as a promising method for clean energy production. Continued efforts have been made to enhance the performance of solar-to-fuel energy conversion. The introduction of localized surface plasmon resonance (SPR) has been proposed as a promising strategy to enhance the efficiency of photocatalytic water splitting. This review presents an overview of the recent progress in the development of plasmonic photocatalysts for solar water splitting. Plasmon-enhanced mechanisms, including hot electron injection, near-field effects, and light scattering/trapping, are discussed. Furthermore, recent relevant works to discuss the emerging strategies for efficiency improvement and better understanding of the mechanisms are summarized. Finally, the perspectives of plasmonic photocatalysts for water splitting and the possible research directions are presented and discussed.
利用太阳能进行光催化水分解已被广泛研究作为一种有前途的清洁能源生产方法。人们一直在努力提高太阳能到燃料的能量转换性能。引入局域表面等离子体共振(SPR)被提出作为一种提高光催化水分解效率的有前途的策略。本综述介绍了等离子体光催化剂在太阳能水分解方面的最新进展。讨论了等离子体增强机制,包括热电子注入、近场效应和光散射/俘获。此外,还总结了最近有关提高效率和更好地理解机制的新兴策略的相关工作。最后,提出并讨论了等离子体光催化剂在水分解中的应用前景和可能的研究方向。