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钯催化氰基酯化反应中,氰基甲酸甲酯加成到降冰片烯的C=C键上时外选择性的起源。

The origin of exo-selectivity in methyl cyanoformate addition onto the C=C bond of norbornene in Pd-catalyzed cyanoesterification.

作者信息

Okuda Yasuhiro, Szilagyi Robert K, Mori Seiji, Nishihara Yasushi

机构信息

Division of Chemistry and Biochemistry, Graduate School of Natural Science and Technology, Okayama University, 3-1-1 Tsushimanaka, Kita-ku, Okayama 700-8530, Japan.

出版信息

Dalton Trans. 2014 Jul 7;43(25):9537-48. doi: 10.1039/c4dt00839a.

Abstract

A computational investigation has been carried out to elucidate the origin of the exclusive exo-selectivity in the Pd-catalyzed cyanoesterification of strained cyclic olefins, norbornene and norbornadiene. A hybrid density functional was selected for the level of theory with a triple-ζ quality basis set, which was proposed in an earlier study to provide an experimentally sound ground state electronic structure description for palladium(ii) and palladium(iv) complexes from multi-edge X-ray absorption spectroscopic measurements. Given that the product of oxidative addition can be isolated, we focused on the olefin coordination as the earliest possible origin of exo-selectivity. The calculated geometric structure for the trans-Pd(CN)(COOR)(PPh3)2 complex at the BHandHLYP/def2TZVP/PCM(toluene) level is in an excellent agreement with its experimental structure from crystallographic measurements. Upon dissociation of one of its phosphane ligands, the coordinatively unsaturated trans-isomer is only 17 kJ mol(-1) away from the isomerization transition state, leading to the 14-electron cis-isomers that are 17 to 37 kJ mol(-1) lower in energy than the trans-isomers. Regardless of the initial complex for olefin coordination, the exo-isomer for the norbornene complex is at least 8 kJ mol(-1) lower than the corresponding endo-isomer. The origin of this considerable difference in Gibbs free energy can be attributed to the remarkably different steric and agostic hydrogen interactions between the methylene and the ethylene bridges of the norbornene and the adjacent cis-ligands at the Pd(II) center.

摘要

已开展一项计算研究,以阐明在钯催化的张力环烯烃、降冰片烯和降冰片二烯的氰基酯化反应中,外式选择性独有的起源。选用了一种杂化密度泛函理论水平,并采用了三重ζ质量基组,这是在早期研究中提出的,用于从多边缘X射线吸收光谱测量中为钯(II)和钯(IV)配合物提供符合实验的基态电子结构描述。鉴于氧化加成产物可以分离出来,我们将重点放在烯烃配位上,将其视为外式选择性最早可能的起源。在BHandHLYP/def2TZVP/PCM(甲苯)水平下计算得到的反式-Pd(CN)(COOR)(PPh3)2配合物的几何结构与通过晶体学测量得到的实验结构高度吻合。当其中一个膦配体解离后,配位不饱和的反式异构体与异构化过渡态的能量差仅为17 kJ mol⁻¹,会生成能量比反式异构体低17至37 kJ mol⁻¹的14电子顺式异构体。无论烯烃配位的初始配合物如何,降冰片烯配合物的外式异构体比相应的内式异构体至少低8 kJ mol⁻¹。吉布斯自由能存在如此显著差异的起源可归因于降冰片烯的亚甲基和乙烯桥与钯(II)中心相邻顺式配体之间明显不同的空间和螯合氢相互作用。

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