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Porphyrins and phthalocyanines as biomimetic tools for photocatalytic H2production and CO2reduction

光催化 卟啉 人工光合作用 纳米技术 酞菁 材料科学 化石燃料 化学 催化作用 超分子化学 光化学 有机化学 分子
作者
Emmanouil Nikoloudakis,Ismael López‐Duarte,Georgios Charalambidis,Kalliopi Ladomenou,Mine Ince,Athanassios G. Coutsolelos
出处
期刊:Chemical Society Reviews [The Royal Society of Chemistry]
卷期号:51 (16): 6965-7045 被引量:149
标识
DOI:10.1039/d2cs00183g
摘要

The increasing energy demand and environmental issues caused by the over-exploitation of fossil fuels render the need for renewable, clean, and environmentally benign energy sources unquestionably urgent. The zero-emission energy carrier, H2 is an ideal alternative to carbon-based fuels especially when it is generated photocatalytically from water. Additionally, the photocatalytic conversion of CO2 into chemical fuels can reduce the CO2 emissions and have a positive environmental and economic impact. Inspired by natural photosynthesis, plenty of artificial photocatalytic schemes based on porphyrinoids have been investigated. This review covers the recent advances in photocatalytic H2 production and CO2 reduction systems containing porphyrin or phthalocyanine derivatives. The unique properties of porphyrinoids enable their utilization both as chromophores and as catalysts. The homogeneous photocatalytic systems are initially described, presenting the various approaches for the improvement of photosensitizing activity and the enhancement of catalytic performance at the molecular level. On the other hand, for the development of the heterogeneous systems, numerous methods were employed such as self-assembled supramolecular porphyrinoid nanostructures, construction of organic frameworks, combination with 2D materials and adsorption onto semiconductors. The dye sensitization on semiconductors opened the way for molecular-based dye-sensitized photoelectrochemical cells (DSPECs) devices based on porphyrins and phthalocyanines. The research in photocatalytic systems as discussed herein remains challenging since there are still many limitations making them unfeasible to be used at a large scale application before finding a large-scale application.
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