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用于全色光捕获和电荷分离的含卟啉、二氢卟酚和苝酰亚胺成分的阵列的合成。

Synthesis of arrays containing porphyrin, chlorin, and perylene-imide constituents for panchromatic light-harvesting and charge separation.

作者信息

Hu Gongfang, Kang Hyun Suk, Mandal Amit Kumar, Roy Arpita, Kirmaier Christine, Bocian David F, Holten Dewey, Lindsey Jonathan S

机构信息

Department of Chemistry, North Carolina State University Raleigh North Carolina 27695-8204 USA

Department of Chemistry, Washington University St. Louis Missouri 63130-4889 USA

出版信息

RSC Adv. 2018 Jun 29;8(42):23854-23874. doi: 10.1039/c8ra04052d. eCollection 2018 Jun 27.

Abstract

Achieving solar light harvesting followed by efficient charge separation and transport is an essential objective of molecular-based artificial photosynthesis. Architectures that afford strong absorption across the near-UV to near-infrared region, namely panchromatic absorptivity, are critically important given the broad spectral distribution of sunlight. A tetrapyrrole-perylene pentad array was synthesized and investigated as a means to integrate panchromatic light harvesting and intramolecular charge separation. The pentad consists of three moieties: (1) a panchromatically absorbing triad, in which a porphyrin is strongly coupled to two perylene-monoimides ethyne linkages; (2) a perylene-diimide electron acceptor; and (3) a chlorin hole-trapping unit. Integrating the three components with diphenylethyne linkers generates moderate electronic coupling for intramolecular energy and hole/electron transfer. The construction of the array relies on a stepwise strategy for incorporating modular pigment building blocks. The key building blocks include a -ABC porphyrin, a chlorin, a perylene-monoimide, and a perylene-diimide, each bearing appropriate (halo, ethynyl) synthetic handles for Pd-catalyzed Sonogashira coupling reactions. One target pentad, three tetrads, four triads, and four monomeric benchmark compounds were synthesized from six building blocks (three new, three reported) and 10 new synthetic intermediates. Four of the tetrapyrrole-containing arrays are zinc chelated, and four others are in the free base form. Absorption and fluorescence spectra and fluorescence quantum yields were also measured. Collectively, investigations of the arrays reveal insights into principles for the design of novel reaction centers integrated with a panchromatic antenna for artificial photosynthetic studies.

摘要

实现太阳光捕获,随后进行高效的电荷分离和传输,是基于分子的人工光合作用的一个基本目标。鉴于太阳光的光谱分布广泛,能够在近紫外到近红外区域实现强吸收的结构,即全色吸收率,至关重要。合成并研究了一种四吡咯-苝五元阵列,作为整合全色光捕获和分子内电荷分离的一种手段。该五元体由三个部分组成:(1)一个全色吸收三联体,其中卟啉与两个苝单酰亚胺通过乙炔键强烈耦合;(2)一个苝二酰亚胺电子受体;(3)一个二氢卟吩空穴捕获单元。用二苯乙炔连接体整合这三个组分,可产生适度的分子内能量和空穴/电子转移的电子耦合。该阵列的构建依赖于一种逐步策略,用于纳入模块化色素构建块。关键构建块包括一个-ABC卟啉、一个二氢卟吩、一个苝单酰亚胺和一个苝二酰亚胺,每个都带有适合钯催化的Sonogashira偶联反应的(卤代、乙炔基)合成手柄。从六个构建块(三个新的、三个已报道的)和10个新的合成中间体合成了一个目标五元体、三个四联体、四个三联体和四个单体基准化合物。含四吡咯的阵列中有四个是锌螯合的,另外四个是游离碱形式。还测量了吸收光谱、荧光光谱和荧光量子产率。总体而言,对阵列的研究揭示了与用于人工光合作用研究的全色天线集成的新型反应中心设计原则的见解。

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