具有浸没势垒的气相双分子反应动力学的理论见解。

IF 3.7 Q2 CHEMISTRY, PHYSICAL ACS Physical Chemistry Au Pub Date : 2023-06-27 DOI:10.1021/acsphyschemau.3c00009
Hongwei Song*,  and , Hua Guo*, 
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引用次数: 1

摘要

活化气相双分子反应的动力学表现为积分截面单调增加和阿伦尼斯动力学,以及它们的无障碍捕获对应物的动力学表现出积分截面单调减少和速率系数的负温度依赖性。从这个角度来看,我们专注于具有浸没势垒的气相双分子反应的动力学,这种反应通常涉及自由基或离子,在燃烧、大气化学、天体化学和等离子体化学中普遍存在。这种反应的速率系数的温度依赖性通常是非阿伦尼斯的和复杂的,并且相应的动力学也可能与具有显著屏障的动力学或完全由捕获主导的动力学大不相同。最近对这种反应的实验和理论研究,特别是在相对较低的温度或碰撞能量下,揭示了有趣的动力学行为,本文对此进行了讨论。这些新知识丰富了我们对这些异常反应动力学的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Theoretical Insights into the Dynamics of Gas-Phase Bimolecular Reactions with Submerged Barriers

Much attention has been paid to the dynamics of both activated gas-phase bimolecular reactions, which feature monotonically increasing integral cross sections and Arrhenius kinetics, and their barrierless capture counterparts, which manifest monotonically decreasing integral cross sections and negative temperature dependence of the rate coefficients. In this Perspective, we focus on the dynamics of gas-phase bimolecular reactions with submerged barriers, which often involve radicals or ions and are prevalent in combustion, atmospheric chemistry, astrochemistry, and plasma chemistry. The temperature dependence of the rate coefficients for such reactions is often non-Arrhenius and complex, and the corresponding dynamics may also be quite different from those with significant barriers or those completely dominated by capture. Recent experimental and theoretical studies of such reactions, particularly at relatively low temperatures or collision energies, have revealed interesting dynamical behaviors, which are discussed here. The new knowledge enriches our understanding of the dynamics of these unusual reactions.

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期刊介绍: ACS Physical Chemistry Au is an open access journal which publishes original fundamental and applied research on all aspects of physical chemistry. The journal publishes new and original experimental computational and theoretical research of interest to physical chemists biophysical chemists chemical physicists physicists material scientists and engineers. An essential criterion for acceptance is that the manuscript provides new physical insight or develops new tools and methods of general interest. Some major topical areas include:Molecules Clusters and Aerosols; Biophysics Biomaterials Liquids and Soft Matter; Energy Materials and Catalysis
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