首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Untangling the chemical dynamics of the reaction of boron atoms, ~(11)B(~2P_j), with diacetylene, C_4H _2(X~1Σ_g~+)-A crossed molecular beams and Ab initio study
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Untangling the chemical dynamics of the reaction of boron atoms, ~(11)B(~2P_j), with diacetylene, C_4H _2(X~1Σ_g~+)-A crossed molecular beams and Ab initio study

机译:解析硼原子〜(11)B(〜2P_j)与乙炔,C_4H _2(X〜1Σ_g〜+)-A交叉分子束的化学动力学和从头算研究

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摘要

A crossed molecular beams experiment with ground state boron atoms, B(~2P_j), and diacetylene, C_4H_2(X ~1Σ_g~+), was conducted at a collision energy of 21.1 ± 0.3 kJ mol~(-1) under single collision conditions and combined with electronic structure calculations on the ~(11)BC_4H_2 potential energy surface. Our combined experimental and computational studies indicate that the reaction proceeds without entrance barrier and involves indirect scattering dynamics. Three initial collision complexes, in which the boron atom adds to one or two carbon atoms, were characterized computationally. These intermediates rearranged via hydrogen shifts and/or successive ring-opening/ring closure processes on the doublet surface ultimately yielding a cyclic, C_s symmetric ~(11)BC_4H_2 intermediate. The latter was found to decompose via atomic hydrogen loss to yield a cyclic ~(11)BC _4H(X~1A′) isomer; to a minor amount, the cyclic intermediate isomerized via ring-opening to the linear HCCBCCH(X ~2Σ_g~+) molecule, which in turn emitted a hydrogen atom to yield the linear HCCBCC(X~1Σ~+) molecule. The overall reactions to form these isomers were found to be exoergic by 55 and 61 J mol~(-1), respectively, and involved rather loose exit transition states. On the basis of the energetics, upper limits of two energetically less stable species, the linear HBCCCC(X~1Σ ~+) and BCCCCH(X~1Σ~+) species, were derived to be 12 and 2.2%, respectively. The dynamics of this reaction are also compared with the reaction of ground state boron atoms with acetylene studied earlier in our group.
机译:在单一碰撞条件下,以21.1±0.3 kJ mol〜(-1)的碰撞能量,对基态硼原子B(〜2P_j)和联乙炔C_4H_2(X〜1Σ_g〜+)进行了交叉分子束实验。并结合〜(11)BC_4H_2势能面的电子结构计算。我们的实验和计算研究相结合,表明反应的进行没有入口障碍,并且涉及间接散射动力学。计算了三个初始碰撞配合物,其中硼原子加到一个或两个碳原子上。这些中间体通过氢转移和/或在双峰表面上连续的开环/闭环过程重排,最终产生环状的,对称的C_s对称〜(11)BC_4H_2中间体。发现后者通过原子氢损失分解而产生环状〜(11)BC _4H(X〜1A')异构体;少量的环状中间体通过开环异构化成线性HCCBCCH(X〜2Σ_g〜+)分子,后者又释放出一个氢原子,生成线性HCCBCC(X〜1Σ〜+)分子。发现形成这些异构体的总体反应分别为55和61 J mol〜(-1)放热,并且涉及相当宽松的出口过渡态。在能量学的基础上,得出两种能量不稳定的物种的上限,即线性HBCCCC(X〜1Σ〜+)和BCCCCH(X〜1Σ〜+)物种的上限分别为12%和2.2%。我们还将该反应的动力学与基态硼原子与乙炔的反应进行了比较。

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