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Application of singlet energy transfer in triplet state formation: broadband visible light-absorbing triplet photosensitizers, molecular structure design, related photophysics and applications

机译:单重态能量转移在三重态形成中的应用:宽带吸收可见光的三重态光敏剂,分子结构设计,相关光物理和应用

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摘要

Conventional triplet photosensitizers usually contain a single visible light-harvesting chromophore, which is responsible for the dual-functionality of light-harvesting and intersystem crossing (ISC). These profiles have a few disadvantages, such as a single absorption band in the visible spectral range, low efficiency of harvesting broadband visible light (e.g., solar light), and difficulty in designing new triplet photosensitizers because the relationship between molecular structure and ISC is unclear. To address these challenges, the application of the Forster resonance energy transfer (FRET) and spin converter can lead to a new molecular structure motif for triplet photosensitizers to attain the broadband visible light-absorption, as well as disintegrated functionality of visible light-harvesting and ISC. This Review article summarizes the triplet photosensitizers showing broadband visible light absorption, including the molecular design rationales, the photophysical processes involved in these photosensitizers, such as the FRET, ISC, and the photo-induced electron transfer (PET), studied with nanosecond and femtosecond transient absorption spectroscopies. The application of triplet photosensitizers in photoredox catalytic organic reactions and triplet-triplet annihilation upconversion are also discussed. We summarized the molecular structure-property relationship of these new photosensitizers, as well as the challenges in this emerging area.
机译:常规的三重态光敏剂通常包含单个可见光收集生色团,该生色团负责光收集和系统间交叉(ISC)的双重功能。这些概况具有一些缺点,例如在可见光谱范围内的单个吸收带,收集宽带可见光(例如太阳光)的效率低以及由于分子结构和ISC之间的关系不清楚而难以设计新的三重态光敏剂。 。为了应对这些挑战,Forster共振能量转移(FRET)和自旋转换器的应用可以为三重态光敏剂带来新的分子结构图案,以实现宽带可见光吸收以及可见光收集和分解的功能性下降。 ISC。这篇综述文章总结了三重态光敏剂显示出宽带可见光的吸收,包括分子设计原理,这些光敏剂所涉及的光物理过程(例如FRET,ISC和光诱导电子转移(PET)),分别以纳秒和飞秒进行了研究。瞬态吸收光谱。还讨论了三重态光敏剂在光氧化还原催化有机反应和三重态-三重态an灭上转换中的应用。我们总结了这些新型光敏剂的分子结构与性质的关系,以及这一新兴领域中的挑战。

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