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首页> 外文期刊>Angewandte Chemie >Experimental and Computational Exploration of para-Selective Silylation with a Hydrogen-Bonded Template
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Experimental and Computational Exploration of para-Selective Silylation with a Hydrogen-Bonded Template

机译:与氢键合模板对照组选择性甲硅烷化的实验和计算探索

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摘要

The regioselective conversion of C-H bonds into C-Si bonds is extremely important owing to the natural abundance and non-toxicity of silicon. Classical silylation reactions often suffer from poor functional group compatibility, low atom economy, and insufficient regioselectivity. Herein, we disclose a template-assisted method for the regioselective para silylation of toluene derivatives. A new template was designed, and the origin of selectivity was analyzed experimentally and computationally. An interesting substrate-solvent hydrogen-bonding interaction was observed. Kinetic, spectroscopic, and computational studies shed light on the reaction mechanism. The synthetic significance of this strategy was highlighted by the generation of a precursor of a potential lipophilic bioisostere of gamma-aminobutyric acid (GABA), various late-stage diversifications, and by mimicking enzymatic transformations.
机译:由于硅的自然丰度和非毒性,C-H键对C-Si键的区域选择性转化非常重要。 经典的甲硅烷化反应通常患有劣质性群体相容性,低原子经济性和不充分的区域选择性。 在此,我们公开了一种用于甲苯衍生物的区域选择性β甲硅烷基化的模板辅助方法。 设计了一个新的模板,通过实验和计算分析了选择性的起源。 观察到有趣的基材溶剂氢键相互作用。 动力学,光谱和计算研究揭示了反应机制。 通过产生γ-氨基丁酸(GABA),各种后期多样化的潜在亲脂性生物异位,以及模拟酶促转化,产生该策略的合成意义。

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