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Latest progress in constructing solid-state Z scheme photocatalysts for water splitting

机译:最新进展在构建固态Z光解水制氢研究计划的催化剂

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摘要

Artificial Z scheme photocatalysis has been considered as a promising strategy for producing the clean energy source of hydrogen gas. The core of the Z scheme is a two-step excitation process in a tandem structured photosystem aiming to satisfy both the criteria of wide range solar spectrum absorption and strong thermodynamic driving force for photolysis reactions. Therefore, efficient connection and matching between the two photosystems is the key to improve the photocatalytic activity. Recently, new progress has been achieved concerning the principles and applications of state-of-the-art solid-state Z schematic systems to enhance the photocatalytic efficiency and repress competitive reactions. This review summarizes the latest approaches to all-solid-state Z schemes for photocatalytic water splitting, including new tandem structures, new morphologies, and new connection modes to improve light absorption as well as carrier transportation. The challenges for developing novel high performance Z scheme photocatalysts are also discussed.
机译:人工Z计划光催化作为一个有前途的生产战略清洁能源氢气的来源。Z计划是一个两步激发的过程在串联结构光系统的目标满足广泛的标准太阳能光谱吸收和强烈的热力学光解反应的驱动力。因此,高效的连接和匹配这两个光系统之间的关键提高光催化活性。有新进展有关先进的的原理及应用固态Z系统提高示意图光催化效率和抑制竞争反应。方法全固态Z计划光催化水分解,包括新串联结构、新形态、新连接模式,以提高光吸收航空运输。为开发新型高性能Z计划论文进行了讨论。

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