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Engineered inverse opal structured semiconductors for solar light-driven environmental catalysis

机译:用于太阳光驱动环境催化的工程逆蛋白石结构半导体

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摘要

Inverse opal (IO) macroporous semiconductor materials with unique physicochemical advantages have been widely used in solar-related environmental areas. In this minireview, we first summarize the synthetic methods of IO materials, emphasizing the two-step and three-step approaches, with the typical physicochemical properties being compared where applicable. We subsequently discuss the application of IO semiconductors (e.g., TiO2, ZnO, g-C3N4) in various photo-related environmental techniques, including photo- and photoelectro-catalytic organic pollutant degradation in water, optical sensors for environmental monitoring, and water disinfection. The engineering strategies of these hierarchical structures for optimizing the activities for different catalytic reactions are discussed, ranging from heterojunction construction, cocatalyst loading, and heteroatom doping, to surface defect construction. Structure–activity relationships are established correspondingly. With a systematic understanding of the unique properties and catalytic activities, this review is expected to orient the design and structure optimization of IO semiconductor materials for photo-related performance improvement in various environmental techniques. Finally, the challenges of emerging IO structured semiconductors and future development directions are proposed.
机译:逆蛋白石(IO)大孔半导体材料具有独特的物理化学的优势已被广泛用于solar-related吗环境领域。总结IO材料的合成方法,强调了两步、三步与典型的物理化学方法,属性比较适用的地方。随后讨论IO的应用半导体(如二氧化钛、氧化锌g-C3N4)各种photo-related环保技术,包括照片和photoelectro-catalytic在水中有机污染物降解、光环境监测传感器,和水消毒层次结构优化活动不同的催化反应讨论,从异质结建设、助催化剂加载和杂原子掺杂、表面缺陷结构。建立了结构活性关系相应的。独特的属性和催化活动,本文将东方IO的设计和结构优化半导体材料photo-related在各种环境性能改善技术。IO结构化半导体和未来提出了发展方向。

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