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The mechanisms of isobutene hydration yielding tert-butanol catalyzed by a strong mineral acid (H2SO4) and Lewis-Brønsted superacid (HF/SbF5)

机译:强无机酸(H2SO4)和Lewis-Brønsted超强酸(HF / SbF5)催化异丁烯水合生成叔丁醇的机理

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摘要

The mechanism of the (CH3)2CCH2+H2O→(CH3)3COH reaction catalyzed by two strong acids (H2SO4 and HSbF6) was investigated theoretically using the ab initio MP2 and CCSD(T) methods and the aug-cc-pVDZ/LANL2DZ and aug-cc-pVTZ/LANL2DZ basis sets. The effects of surrounding solvent molecules were approximated by employing the polarized continuum solvation model. The most important findings include the observation that both acids are capable of catalyzing isobutene hydration but the reaction is predicted to proceed faster when the HSbF6 superacid plays the catalyst role.
机译:从头开始使用MP2和CCSD(T)方法以及aug-cc-pVDZ / LANL2DZ和Aug-cc-pVDZ / LANL2DZ分别从理论上研究了由两种强酸(H2SO4和HSbF6)催化的(CH3)2CCH2 + H2O→(CH3)3COH反应的机理。 aug-cc-pVTZ / LANL2DZ基本集。通过采用极化连续介质溶剂化模型来估算周围溶剂分子的作用。最重要的发现包括观察到两种酸都能够催化异丁烯水合,但是当HSbF6超强酸发挥催化剂作用时,预计反应会进行得更快。

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