首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Unraveling the Concerted Reaction Mechanism of the Noncatalyzed Mukaiyama Reaction between C,O,O-Tris(trimethylsilyl)ketene Acetal and Aldehydes Using Density Functional Theory
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Unraveling the Concerted Reaction Mechanism of the Noncatalyzed Mukaiyama Reaction between C,O,O-Tris(trimethylsilyl)ketene Acetal and Aldehydes Using Density Functional Theory

机译:利用密度泛函理论揭示C,O,O-三(三甲基甲硅烷基)乙烯酮缩醛与醛之间非催化Mukaiyama反应的协调反应机理

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摘要

The uncatalyzed Mukaiyama aldol reaction between C,O,O-tris(trimethylsilyl)ketene acetal and aldehydes bearing alkyl, vinyl, and aromatic substituents has been studied theoretically using density functional theory with the M06-2X exchange-correlation functional. These DFT calculations mostly demonstrate that (i) the syn product is both kinetically and thermodynamically favored, (ii) the diastereoselectivity of the uncatalyzed reaction is larger than observed for the reaction catalyzed by HgI2 and it is inverted with respect to the latter, (iii) solvents with larger dielectric constants increase the activation barrier but reduce the diastereoselectivity, (iv) the concerted reaction is preferred over the stepwise reaction, and (v) the OSiMe3 group in geminal lowers the activation barrier and increases the energy of reaction. Analyzing the concerted mechanism unravels four types of cyclic transition states, two pro-anti and two pro-syn. Then, the relative energy of the most stable transition state of each type as well as of the corresponding anti and syn products shows that the syn reaction path is located at lower Gibbs enthalpy than the anti reaction path for all substituents.
机译:使用密度泛函理论和M06-2X交换相关功能理论研究了C,O,O-三(三甲基甲硅烷基)乙烯酮缩醛与带有烷基,乙烯基和芳族取代基的醛之间的未催化Mukaiyama羟醛反应。这些DFT计算主要表明(i)合成产物在动力学和热力学上均受青睐;(ii)未催化反应的非对映选择性大于HgI2催化反应的观察值,并且相对于HgI2而言是相反的。(iii )具有较大介电常数的溶剂会增加活化势垒,但会降低非对映选择性,(iv)协同反应优于逐步反应,并且(v)双键中的OSiMe3基降低了活化势垒并增加了反应能量。分析协调机制,可以分解出四种类型的循环过渡状态,即两种亲对和两种亲同。然后,每种类型最稳定的过渡态以及相应的反和顺式产物的相对能量表明,对于所有取代基,syn反应路径的吉布斯焓均低于反反应路径。

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