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正丙基过氧自由基的环境构象分布和单分子分解的理论测定。

Theoretical determinations of the ambient conformational distribution and unimolecular decomposition of n-propylperoxy radical.

作者信息

Merle John K, Hayes Carrigan J, Zalyubovsky Sergey J, Glover Brent G, Miller Terry A, Hadad Christopher M

机构信息

Department of Chemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio 43210, USA.

出版信息

J Phys Chem A. 2005 Apr 28;109(16):3637-46. doi: 10.1021/jp050444n.

Abstract

The conformational distribution and unimolecular decomposition pathways for the n-propylperoxy radical have been generated at the CBS-QB3, B3LYP/6-31+G and mPW1K/6-31+G levels of theory. At each of the theoretical levels, the 298 K Boltzmann distributions and rotational profiles indicate that all five unique rotamers of the n-propylperoxy radical can be expected to be present in significant concentrations at thermal equilibrium. At the CBS-QB3 level, the 298 K distribution of rotamers is predicted to be 28.1, 26.4, 19.6, 14.0, and 11.9% for the gG, tG, gT, gG', and tT conformations, respectively. The CBS-QB3 C-OO bond dissociation energy (DeltaH298 K) for the n-propylperoxy radical has been calculated to be 36.1 kcal/mol. The detailed CBS-QB3 potential energy surface for the unimolecular decomposition of the n-propylperoxy radical indicates that important bimolecular products could be derived from two 1,4-H transfer mechanisms available at T < 500 K, primarily via an activated n-propylperoxy adduct.

摘要

正丙基过氧自由基的构象分布和单分子分解途径已在CBS-QB3、B3LYP/6-31+G和mPW1K/6-31+G理论水平上生成。在每个理论水平上,298K的玻尔兹曼分布和转动轮廓表明,在热平衡时,正丙基过氧自由基的所有五个独特旋转异构体都有望以显著浓度存在。在CBS-QB3水平上,预测298K时旋转异构体的分布对于gG、tG、gT、gG'和tT构象分别为28.1%、26.4%、19.6%、14.0%和11.9%。正丙基过氧自由基的CBS-QB3 C-OO键离解能(ΔH298K)经计算为36.1 kcal/mol。正丙基过氧自由基单分子分解的详细CBS-QB3势能面表明,重要的双分子产物可能来自T < 500K时可用的两种1,4-H转移机制,主要通过活化的正丙基过氧加合物。

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