Sequential nucleophilic aromatic substitutions on cyanuric chloride: synthesis of BODIPY derivatives and mechanistic insights.

IF 2.9 3区 化学 Q1 CHEMISTRY, ORGANIC Organic & Biomolecular Chemistry Pub Date : 2024-07-24 DOI:10.1039/d4ob00683f
Bruno da Silva Marques, Karine Nascimento de Andrade, Bárbara Pereira Peixoto, Fernando Martins Dos Santos, Leandro Ferreira Pedrosa, Rodolfo Goetze Fiorot, Marcos Costa de Souza
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Abstract

Herein we report a study on the sequential substitution of different nucleophiles on cyanuric chloride to obtain potential candidates for metal sensors (5a-c). The set of nucleophiles on the 1,3,5-triazine ring includes a phenolic BODIPY, an aminoalkyl pyridine and aminoalkyl phosphoramidates, each one designed to play a specific role in the final fluoroionophore. Three new triazine triads were synthesized in similar yields: 5a (45%), 5b (43%) and 5c (52%) after a methodical sequential combination of the nucleophiles via thermodependent nucleophilic aromatic substitution of the three chlorine atoms of cyanuric chloride. To ratify the synthetic results we simulated the reaction mechanisms for the different nucleophiles, aiming to address the distinctive orthogonality and temperature control inherent in this process, identifying and providing a sound rationale for any preferential sequence of nucleophiles inserted into the triazine core. According to our experimental and computational analysis (thermo- and kinetic preferences), we have identified the following preferential order for the sequential substitution: p-hydroxybenzaldehyde > 2-(pyridin-2-yl)ethanamine > aminoalkyl phosphoramidate, indicating that all steps follow a single-step process (concerted) in two stages, where nucleophilic addition precedes leaving group dissociation. The Meisenheimer σ-complex was identified as a transition state structure, with insufficient stability to exist as an intermediate. We observed a consistent and progressive increase in barrier height: 2-8 kcal mol-1 for the first step, 9-15 kcal mol-1 for the second step, and >15 kcal mol-1 for the third substitution. These findings align with the experimental observation of thermodependency in the sequential substitution.

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三聚氯氰的顺序亲核芳香取代:BODIPY 衍生物的合成及机理研究。
在此,我们报告了一项关于三聚氯氰不同亲核物顺序取代的研究,以获得潜在的候选金属传感器 (5a-c)。1,3,5-三嗪环上的一组亲核物包括酚类 BODIPY、氨基烷基吡啶和氨基烷基磷酰胺,每种亲核物都旨在最终的荧光团中发挥特定的作用。以相似的产率合成了三种新的三嗪三聚体:5a (45%)、5b (43%) 和 5c (52%)是通过三聚氯氰的三个氯原子进行热亲核芳香取代,然后有条不紊地按顺序组合出亲核物。为了验证合成结果,我们模拟了不同亲核物的反应机理,目的是解决这一过程中固有的独特正交性和温度控制问题,确定并提供将任何亲核物插入三嗪核心的优先顺序的合理理由。根据我们的实验和计算分析(热学和动力学优选),我们确定了以下顺序取代的优选顺序:对羟基苯甲醛 > 2-(吡啶-2-基)乙胺 > 氨基烷基膦酸酯,这表明所有步骤都遵循分两个阶段的单步过程(协同),其中亲核加成先于离去基团解离。梅森海默 σ 复合物被确定为过渡态结构,其稳定性不足以作为中间体存在。我们观察到势垒高度持续逐步增加:第一步为 2-8 kcal mol-1,第二步为 9-15 kcal mol-1,第三步取代时大于 15 kcal mol-1。这些发现与实验观察到的热依赖性相吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Organic & Biomolecular Chemistry
Organic & Biomolecular Chemistry 化学-有机化学
CiteScore
5.50
自引率
9.40%
发文量
1056
审稿时长
1.3 months
期刊介绍: The international home of synthetic, physical and biomolecular organic chemistry.
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