使用 3DPAFIPN 作为卤代二氰基苯基光敏剂,通过连续可见光诱导的电子转移过程,实现多官能团化二氢-2-氧吡咯的革兰氏级光合作用

F. Mohamadpour, Ali Moahammad Amani
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引用次数: 0

摘要

通常情况下,有机染料的激发态寿命较短,这是开发高效光氧化还原过程的主要障碍。由于其独特的品质和效率,一类特殊的有机发色团引起了科学界的极大兴趣。热激活延迟荧光(TADF)只出现在最低两个激发态(即单激发态(S1)和三重激发态(T1))之间具有最小能隙(通常小于 0.2 eV)的分子中,是所研究分子的一个独特性质。利用胺、乙炔二羧酸二烷基酯和甲醛的迈克尔-曼尼希环缩合反应,开发出了一种可持续的多官能化二氢-2-氧吡咯的光合作用过程。目前的研究工作详细讨论了这一系列化学物质的绿色自由基合成策略的开发。这项工作使用了一种新型卤代二氰基苯基光敏剂作为光催化剂。它被溶解在乙醇中,在环境温度下暴露在空气中,并由蓝色发光二极管触发,成为一种可再生能源。该项目的主要目标是使用一种基于卤代氰基烯烃的新型供体-受体(D-A),这种供体-受体易于获得,价格合理。当暴露在可见光下时,3DPAFIPN[2,4,6-三(二苯基氨基)-5-氟间苯二腈]光催化剂(热激活延迟荧光(TADF))可以诱导单电子转移(SET),提供了一种高效、节能、环保的简单绿色方法。此外,我们还计算了多官能化二氢-2-氧吡咯的周转次数(TON)和周转频率(TOF)。克级环化也被证明是一种可用于工业应用的实用技术。
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Gram-scale photosynthesis of polyfunctionalized dihydro-2-oxypyrroles using 3DPAFIPN as a halogenated dicyanobenzene-based photosensitizer via a consecutive visible-light-induced electron transfer process
Typically, organic dyes show lower excited state lifetimes, a key hindrance in the development of efficient photoredox processes. Due to their distinctive qualities and efficiency, a particular class of organic chromophores has drawn considerable interest from the scientific community. Thermally activated delayed fluorescence (TADF), is only seen in molecules with a minimal energy gap (usually less than 0.2 eV) between their lowest two excited states, i.e., singlet excited state (S1) and triplet excited state (T1), is a distinctive property of the molecules under study. Isophthalonitriles are a promising family of chromophores for use as organic photocatalysts because of the ease with which their redox potentials may be adjusted and the prolonged singlet excited states resulting from TADF.A sustainable process for the photosynthesis of polyfunctionalized dihydro-2-oxypyrroles has been developed using the Michael-Mannich cyclocondensation of amines, dialkyl acetylenedicarboxylates, and formaldehyde. The development of a green radical synthesis strategy for this family of chemicals is discussed in detail in the current work. This work used a novel halogenated dicyanobenzene-based photosensitizer was used as a photocatalyst. It was dissolved in ethanol, exposed to air at ambient temperature, and triggered by a blue light-emitting diode as a renewable energy source. This project’s main goal is to use a novel conveniently accessible, reasonably priced donor-acceptor (D-A) based on halogenated cyanoarene.When exposed to visible light, the 3DPAFIPN [2,4,6-tris(diphenylamino)-5-fluoroisophthalonitrile] photocatalyst, which is a thermally activated delayed fluorescence (TADF), can induce single-electron transfer (SET), providing a simple and green method that is highly effective, energy-efficient, and environmentally friendly. Also, we calculated the turnover number (TON) and turnover frequency (TOF) for polyfunctionalized dihydro-2-oxypyrroles. Gram-scale cyclization has also been shown to be a practical technique for use in industrial applications.
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