Hoshimoto Yoichi, Sakuraba Mahiro, Kinoshita Takuya, Ohbo Masaki, Ratanasak Manussada, Hasegawa Jun-Ya, Ogoshi Sensuke
Department of Applied Chemistry, Faculty of Engineering, Osaka University, Osaka, Japan.
Institute for Catalysis, Hokkaido University, Sapporo, Japan.
Commun Chem. 2021 Sep 27;4(1):137. doi: 10.1038/s42004-021-00576-1.
Chemists have designed strategies that trigger the conformational isomerization of molecules in response to external stimuli, which can be further applied to regulate the complexation between Lewis acids and bases. We have recently developed a system in which frustrated carbene-borane pairs are revived from shelf-stable but external-stimuli-responsive carbene-borane adducts comprised of N-phosphine-oxide-substituted imidazolylidenes (PoxIms) and triarylboranes. Herein, we report the detailed mechanism on this revival process. A thermally induced borane-transfer process from the carbene carbon atom to the N-phosphinoyl oxygen atom initiates the transformation of the carbene-borane adduct. Subsequent conformational isomerization via the rotation of the N-phosphinoyl group in PoxIm moieties eventually leads to the revival of frustrated carbene-borane pairs that can cleave H. We believe that this work illustrates an essential role of dynamic conformational isomerization in the regulation of the reactivity of external-stimuli-responsive Lewis acid-base adducts that contain multifunctional substituents.
化学家们设计了一些策略,可使分子响应外部刺激而发生构象异构化,这种策略可进一步应用于调节路易斯酸和碱之间的络合作用。我们最近开发了一种体系,其中受阻卡宾-硼烷对可从由N-氧化膦取代的咪唑啉(PoxIm)和三芳基硼烷组成的货架稳定但对外部刺激有响应的卡宾-硼烷加合物中复活。在此,我们报告了这一复活过程的详细机制。一个从卡宾碳原子到N-膦酰基氧原子的热诱导硼烷转移过程引发了卡宾-硼烷加合物的转变。随后通过PoxIm部分中N-膦酰基的旋转进行的构象异构化最终导致受阻卡宾-硼烷对的复活,该对可裂解H。我们认为,这项工作说明了动态构象异构化在调节含有多功能取代基的外部刺激响应性路易斯酸碱加合物的反应性方面的重要作用。