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Mechanism of Insertion Reactions between Silylenoid H_2SiLiF and GeH_3R(R=F,OH,NH_2):a Theoretical Study
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作者 焉炳飞 李文佐 +2 位作者 肖翠平 李庆忠 程建波 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2015年第7期1004-1012,共9页
Theoretical investigations on the insertion reaction mechanisms of three- membered-ring silylenoid H2 Si Li F with GeH 3R(R = F, OH, NH2) have been systematically carried out by combined density functional theory(... Theoretical investigations on the insertion reaction mechanisms of three- membered-ring silylenoid H2 Si Li F with GeH 3R(R = F, OH, NH2) have been systematically carried out by combined density functional theory(DFT) and ab initio quantum chemical calculations. The geometries of all stationary points for these reactions were optimized using the B3 LYP method and then the QCISD method was used to calculate the single-point energies. The calculated results indicate that, there are one precursor complex(Q), one transition state(TS), and one intermediate(IM) which connect the reactants and the products along the potential energy surface. The insertion reactions of three-membered-ring silylenoid with Ge H3 R proceed in a concerted manner, forming H2RSi-Ge H3 and Li F. The calculated potential energy barriers of the three reactions are 29.17, 30.90, and 54.07 k J/mol, and the reaction energies for the three reactions are –127.05, –116.91, and –103.31 k J/mol, respectively. The insertion reactions in solvents are similar to those in vacuum. Under the same situation, the insertion reactions should occur easily in the following order: GeH 3-F GeH 3-OH GeH 3-NH2. The elucidations of the mechanism of these insertion reactions provided a new mode of silicon-germanium bond formation. 展开更多
关键词 insertion reactions silylenoid h2Si LiF Ge h3R(R = F Oh Nh2 DFT
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Isomers and [2,3]-Sila-wittig Rearrangement of [(Allyloxy)silyl]lithium Silylenoid in the Gas Phase and THF Solvent
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作者 解菊 冯大诚 殷亚星 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 北大核心 2008年第7期858-864,共7页
Theoretical calculations of the [2,3]-sila-wittig rearrangement of isomers of [(allyloxy)silyl]lithium (C3H5O)HzSiLi have been performed in the gas phase and THF solvent using the G3MP2B3 method. Seven isomers of ... Theoretical calculations of the [2,3]-sila-wittig rearrangement of isomers of [(allyloxy)silyl]lithium (C3H5O)HzSiLi have been performed in the gas phase and THF solvent using the G3MP2B3 method. Seven isomers of silylenoid (C3H5O)H2SiLi, 1-7, are found. The [2,3]-silawittig rearrangement paths are followed using two isomers, 2 and 4, to yield the transition states as well as the products. In the transition state, the silicon center functions as a nucleophile and the aUyl as an electrophile. The interaction between the silicon and allylic sites leads to the formation of SiC(3) bond and the break of O-C(1) bond. Finally, the (allylsilyl)oxylithium (C3H5)H2SiOLi is obtained. The rearrangement paths are confirmed by the intrinsic reaction coordinate (IRC) calculations. The rearrangement mechanisms of reactions of 2 and 4 are similar, and the latter reaction is more favored in the gas phase and THF solvent. Also, the solvent effects are analyzed in this work. 展开更多
关键词 silylenoid (C3h5O)h2SiLi ISOMER REARRANGEMENT G3MP2B3
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Isomeric structures, isomerization and decomposition of silylenoids H2SiMX(MX=KF,KCl LiBr,NaBr and KBr) 被引量:1
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作者 Feng, DC Feng, SY Deng, CH 《Chinese Journal of Chemistry》 SCIE CAS CSCD 1995年第6期481-486,共6页
The isomeric structures, isomerization and decomposition of silylenoids H(2)SiMX (MX=KF, KCl, LiBr, NaBr and KBr) have been investigated by ab initio molecular orbital theory. These silylenoids have four kinds of very... The isomeric structures, isomerization and decomposition of silylenoids H(2)SiMX (MX=KF, KCl, LiBr, NaBr and KBr) have been investigated by ab initio molecular orbital theory. These silylenoids have four kinds of very similar equilibrium structures. The three-membered ring and p-complex structures should be stable and experimentally detectable. The lifetime of sigma-complex and tetrahedral structures would be very short and experimentally undetectable. 展开更多
关键词 silylenoids h(2)simx isomeric structures ISOMERIZATION DECOMPOSITION
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