化学
外消旋化
对映选择合成
动力学
分子间力
催化作用
对映体
酒
动力学同位素效应
苯乙烯
钌
化学计量学
铱
药物化学
反应机理
外消旋混合物
动力学分辨率
计算化学
有机化学
反应速率
硅烷化
选择性
光化学
苯甲醇
对映体过量
分解
立体化学
动能
化学动力学
酶动力学
反应速率常数
手性(物理)
组合化学
核磁共振波谱
质子核磁共振
立体异构
作者
Pedro H. Helou de Oliveira,Jan Seliger,Shoutong Rao,Guy C. Lloyd-Jones,GuoQiang Wang,Martin Oestreich
摘要
The enantioselective Cu-catalyzed dehydrogenative Si-O coupling of secondary benzylic alcohols with (nBu)3SiH was investigated using a combination of in situ 1H/19F NMR spectroscopic reaction monitoring, isotopic labeling, kinetic modeling, and computational studies. Macrokinetic behavior is governed by substrate-inhibited L*CuOR·ROH resting states: rates rise with conversion when [(nBu)3SiH] > [ROH] and fall when [(nBu)3SiH] < [ROH]. Alcohols bearing electron-withdrawing substituents are stronger inhibitors and show overall lower macrokinetic reactivity, but react faster than alcohols with electron-donating substituents in intermolecular competitions, indicating that inhibition is more substituent-sensitive than the product-committing step. Divergence between intrinsic enantioselectivity and observed macrokinetic rates of enantiomers in isolation results from enantiomer-dependent inhibition, and a product-committing σ-bond-metathesis step is consistent with measured Eyring activation parameters and a Si-H/Si-D KIE ≤ 1.3. Eyring and Hammett analyses, as well as DFT calculations, support an H-bonding inhibition mode for the L*CuOR·ROH resting state. Stoichiometric styrene as an additive suppresses H2 generation and mitigates catalyst deactivation, increasing process safety and efficiency. Dynamic kinetic resolution, enabled by addition of a ruthenium racemization cocatalyst, results in reaction rates comparable to those of the faster enantiomer while improving overall efficiency.
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