亚稳态大环双-迈森海默加合物。

Simon Pascal, Angélina Torres Ruiz, Aerin E Baker, Douglas A Vander Griend, Michel Giorgi, Aurélien Planchat, Denis Jacquemin, Olivier Siri
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引用次数: 0

摘要

缺电子的四硝基氮杂环芳烃通过亲核芳烃取代发生可逆的氰化物捕获,产生了一类前所未有的包含两个Meisenheimer单元的亚稳重阴离子大环,并通过单晶x射线衍射、核磁共振和电子吸收光谱进行了充分表征。作为一种化学燃料,氰化物可以瞬间驱动这种加合物的形成,这种加合物可以在温和的条件下自发地再生母体大环,这是一种罕见的Meisenheimer复合物亚稳态的表现。该系统的动态行为,让人想起不平衡组装,可以通过大环浓度,反离子性质,溶剂和温度进行精细调节。详细的晶体学、光谱和计算分析表明,分子内氢键在稳定加合物中起着关键作用。与简单类似物的比较研究进一步强调了大环预组织和非共价相互作用在控制这种可逆反应性中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metastable Macrocyclic Bis-Meisenheimer Adduct.

An electron-deficient tetranitroazacalixarene is shown to undergo reversible cyanide capture via nucleophilic aromatic substitution, yielding an unprecedented class of metastable dianionic macrocycle incorporating two Meisenheimer units, fully characterized by single-crystal X-ray diffraction, NMR, and electronic absorption spectroscopies. Acting as a chemical fuel, cyanide transiently drives the formation of this adduct, which can spontaneously regenerate the parent macrocycle under mild conditions, representing a rare demonstration of metastability in a Meisenheimer complex. The dynamic behavior of this system, reminiscent of out-of-equilibrium assemblies, is finely tunable through macrocycle concentration, counterion nature, solvent, and temperature. Detailed crystallographic, spectroscopic, and computational analyses reveal that intramolecular hydrogen bonding plays a key role in stabilizing the adduct. Comparative studies with simpler analogues further highlight the importance of macrocyclic preorganization and non-covalent interactions in governing this reversible reactivity.

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