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结合交叉分子束和从头算研究一氧化碳硼(BO;X(2)Σ(+))与1,3 - 丁二烯(CH2CHCHCH2;X(1)Ag)及其氘代类似物的反应。

Combined crossed molecular beam and ab initio investigation of the reaction of boron monoxide (BO; X(2)Σ(+)) with 1,3-butadiene (CH2CHCHCH2; X(1)Ag) and its deuterated counterparts.

作者信息

Maity Surajit, Dangi Beni B, Parker Dorian S N, Kaiser Ralf I, Lin Hong-Mao, E Hai-Ping, Sun Bing-Jian, Chang A H H

机构信息

Department of Chemistry, University of Hawai'i at Manoa , Honolulu, Hawaii 96822, United States.

出版信息

J Phys Chem A. 2015 Feb 19;119(7):1094-107. doi: 10.1021/jp511715e. Epub 2015 Feb 9.

Abstract

The reactions of the boron monoxide ((11)BO; X(2)Σ(+)) radical with 1,3-butadiene (CH2CHCHCH2; X(1)Ag) and its partially deuterated counterparts, 1,3-butadiene-d2 (CH2CDCDCH2; X(1)Ag) and 1,3-butadiene-d4 (CD2CHCHCD2; X(1)Ag), were investigated under single collision conditions exploiting a crossed molecular beams machine. The experimental data were combined with the state-of-the-art ab initio electronic structure calculations and statistical RRKM calculations to investigate the underlying chemical reaction dynamics and reaction mechanisms computationally. Our investigations revealed that the reaction followed indirect scattering dynamics through the formation of (11)BOC4H6 doublet radical intermediates via the barrierless addition of the (11)BO radical to the terminal carbon atom (C1/C4) and/or the central carbon atom (C2/C3) of 1,3-butadiene. The resulting long-lived (11)BOC4H6 intermediate(s) underwent isomerization and/or unimolecular decomposition involving eventually at least two distinct atomic hydrogen loss pathways to 1,3-butadienyl-1-oxoboranes (CH2CHCHCH(11)BO) and 1,3-butadienyl-2-oxoboranes (CH2C ((11)BO)CHCH2) in overall exoergic reactions via tight exit transition states. Utilizing partially deuterated 1,3-butadiene-d2 and -d4, we revealed that the hydrogen loss from the methylene moiety (CH2) dominated with 70 ± 10% compared to an atomic hydrogen loss from the methylidyne group (CH) of only 30 ± 10%; these data agree nicely with the theoretically predicted branching ratio of 80% versus 19%.

摘要

利用交叉分子束装置在单次碰撞条件下研究了一氧化硼((11)BO;X(2)Σ(+))自由基与1,3 - 丁二烯(CH2CHCHCH2;X(1)Ag)及其部分氘代类似物1,3 - 丁二烯 - d2(CH2CDCDCH2;X(1)Ag)和1,3 - 丁二烯 - d4(CD2CHCHCD2;X(1)Ag)的反应。将实验数据与最先进的从头算电子结构计算和统计RRKM计算相结合,以通过计算研究潜在的化学反应动力学和反应机理。我们的研究表明,该反应遵循间接散射动力学,通过(11)BO自由基与1,3 - 丁二烯的末端碳原子(C1/C4)和/或中心碳原子(C2/C3)进行无势垒加成形成(11)BOC4H6双重自由基中间体。生成的长寿命(11)BOC4H6中间体经历异构化和/或单分子分解,最终通过紧密的出口过渡态在整体放能反应中涉及至少两条不同的原子氢损失途径,生成1,3 - 丁二烯基 - 1 - 氧代硼烷(CH2CHCHCH(11)BO)和1,3 - 丁二烯基 - 2 - 氧代硼烷(CH2C ((11)BO)CHCH2)。利用部分氘代的1,3 - 丁二烯 - d2和 - d4,我们发现亚甲基部分(CH2)的氢损失占主导,为70±10%,而次甲基基团(CH)的原子氢损失仅为30±10%;这些数据与理论预测的80%对19%的分支比非常吻合。

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