化学
纳米技术
光催化
催化作用
灵活性(工程)
氧化还原
模块化设计
组合化学
能量转移
分子
光催化
有机分子
能量转换
化学能
反应条件
小分子
光化学
氧化还原
有机合成
高能
作者
Lutao Bai,Jianqing Qi,Xuegang Liu,Jie Yang,Xingwei Guo,Lei Jiao
摘要
Photoexcited molecules enable novel chemical transformations by exhibiting unique redox and photosensitizing properties. While various molecular photocatalysts have been developed, the ones that can facilitate a wide array of reactions remain scarce, and many existing photocatalysts lack the structural flexibility required for fine-tuning their properties. In this study, we introduce the pyridinium(boron) motif as a versatile fluorophore, forming a highly tunable family of organic photocatalysts with extensive applicability. The model compound Ph(dppy)BOMe showcases exceptional photoredox activity and energy transfer capabilities, rivaling those of widely used established photocatalysts. By strategically tailoring the substituents to suit specific catalytic reactions, we demonstrate that these catalysts can be optimized for divergent reactions requiring distinct redox characteristics. The straightforward modular synthesis and flexible tunability of pyridinium(boron) fluorophores position them as promising candidates for advanced photocatalytic applications.
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