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Aluminum(Ⅲ) porphyrin: A unique building block for artificial photosynthetic systems

机译:铝(Ⅲ)卟啉:一种用于人造光合系统的独特构建块

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Despite being the most abundant metal on the Earth, aluminum(III) metal ion centered porphyrin (AlPor, where Por = Porphyrin) derivatives have received much less attention compared to the transition metal porphyrin derivatives. The exceptional dual bonding features, (i) the axial hydroxide readily reacts with carboxylic acid or alcohol and (ii) the Lewis acid Al center forms an adduct with a Lewis base such as pyridine or imidazole, make the AlPor a unique building block for the construction of 'axial-bonding' type multicomponent donor-acceptor systems for a variety of applications. Additionally, due to the rich redox chemistry and optical properties, the AlPor can act as either a photosensitizing electron acceptor or electron donor in donor-acceptor systems. Unlike the zinc(II) porphyrin (ZnPor), the AlPor based donor-acceptor provides an axial topology to investigate the sequential photoinduced energy transfer (EnT) and/or electron transfer (ET) processes in perpendicular to the porphyrin ring. This review surveys AlPor based multicomponent donor-acceptor systems designed to mimic the various components of natural photosynthesis to develop an artificial photosynthetic system for tapping solar energy. Additionally, the review examines the photocatalytic behavior of AlPor towards solar fuel production. Finally, we will discuss the similarities and differences between the 'axial-bonding' type AlPor and ZnPor systems. (C) 2020 Elsevier B.V. All rights reserved.
机译:尽管是地球上最丰富的金属,但与过渡金属卟啉衍生物相比,铝(III)金属离子中心卟啉(其中Por =卟啉)衍生物的衍生物的衍生物相比较少。卓越的双粘合特征,(i)轴向氢氧化物容易与羧酸或醇反应,(ii)路易斯酸Al中心与吡啶或咪唑如吡啶碱的加合物形成,使Alpor成为独特的构建块各种应用的“轴向粘接”型多组分供体系统的构建。另外,由于富氧化还原化学和光学性质,Alper可以用作供体 - 受体系统中的光敏电子受体或电子给体。与锌(II)卟啉(ZnPor)不同,基于Al孢粉的供体 - 受体提供轴向拓扑,用于研究垂直于卟啉环中的顺序光突出能量转移(ENT)和/或电子转移(ET)过程。本综述勘察基于ALP的多组分供体 - 受体系统,旨在模仿天然光合作用的各种组成部分,开发用于攻丝太阳能的人造光合系统。此外,该评审审查检测Alpor朝向太阳能燃料生产的光催化行为。最后,我们将讨论“轴向粘接”型Alpor和Znpor系统之间的相似性和差异。 (c)2020 Elsevier B.V.保留所有权利。

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