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钐(II)类卡宾(ISmCH2I)与乙烯的环丙烷化反应的理论研究以及四氢呋喃溶剂对反应路径的影响。

Theoretical study of samarium (II) carbenoid (ISmCH2I) promoted cyclopropanation reactions with ethylene and the effect of THF solvent on the reaction pathways.

作者信息

Zhao Cunyuan, Wang Dongqi, Phillips David Lee

机构信息

Contribution from the Department of Chemistry, University of Hong Kong, Pokfulam Road, Hong Kong, P. R. China.

出版信息

J Am Chem Soc. 2003 Dec 10;125(49):15200-9. doi: 10.1021/ja030280t.

Abstract

A computational study of the cyclopropanation reactions of divalent samarium carbenoid ISmCH(2)I with ethylene is presented. The reaction proceeds through two competing pathways: methylene transfer and carbometalation. The ISmCH(2)I species was found to have a "samarium carbene complex" character with properties similar to previously investigated lithium carbenoids (LiCH(2)X where X = Cl, Br, I). The ISmCH(2)I carbenoid was found to be noticeably different in structure with more electrophilic character and higher chemical reactivity than the closely related classical Simmons-Smith (IZnCH(2)I) carbenoid. The effect of THF solvent was investigated by explicit coordination of the solvent THF molecules to the Sm (II) center in the carbenoid. The ISmCH(2)I/(THF)(n)() (where n = 0, 1, 2) carbenoid methylene transfer pathway barriers to reaction become systematically lower as more THF solvent is added (from 12.9 to 14.5 kcal/mol for no THF molecules to 8.8 to 10.7 kcal/mol for two THF molecules). In contrast, the reaction barriers for cyclopropanation via the carbometalation pathway remain high (>15 kcal/mol). The computational results are briefly compared to other carbenoid reactions and related species.

摘要

本文介绍了二价钐卡宾化合物ISmCH(2)I与乙烯环丙烷化反应的计算研究。该反应通过两条竞争途径进行:亚甲基转移和碳金属化。发现ISmCH(2)I物种具有“钐卡宾络合物”特征,其性质与先前研究的锂卡宾化合物(LiCH(2)X,其中X = Cl、Br、I)相似。发现ISmCH(2)I卡宾化合物在结构上明显不同,与密切相关的经典席曼-史密斯(IZnCH(2)I)卡宾化合物相比,具有更强的亲电特征和更高的化学反应活性。通过将溶剂四氢呋喃(THF)分子明确配位到卡宾化合物中的Sm(II)中心,研究了THF溶剂的影响。随着加入更多的THF溶剂,ISmCH(2)I/(THF)(n)(其中n = 0、1、2)卡宾化合物亚甲基转移反应途径的势垒系统地降低(从无THF分子时的12.9至14.5千卡/摩尔降至两个THF分子时的8.8至10.7千卡/摩尔)。相比之下,通过碳金属化途径进行环丙烷化的反应势垒仍然很高(>15千卡/摩尔)。将计算结果与其他卡宾化合物反应及相关物种进行了简要比较。

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