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254和268纳米激发波长下烷基碘光解离的能量处置及原子光碎片取向的结构效应

Structural Effects on the Energy Disposal and Atomic Photofragment Alignment for the Photodissociation of Alkyl Iodides at Excitation Wavelengths of 254 and 268 nm.

作者信息

Cachón Javier, Recio Pedro, Sorribes David, Marggi Poullain Sonia, Rubio-Lago Luis, Bañares Luis

机构信息

Departamento de Química Física, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, 28040 Madrid, Spain.

Instituto Madrileño de Estudios Avanzados en Nanociencia (IMDEA Nanoscience), C/Faraday, 9, 28049 Madrid, Spain.

出版信息

J Phys Chem A. 2024 Oct 3;128(39):8312-8321. doi: 10.1021/acs.jpca.4c02217. Epub 2024 Sep 19.

Abstract

This work represents a step forward in the understanding of the widely studied photodynamics of alkyl iodides in the first absorption band. Ultraviolet (UV) photodissociation of several alkyl iodides (RI), specifically, a series of linear and ramified molecules with R = CH, = 1-4, at excitation wavelengths of 254 and 268 nm, which correspond to the maximum of the first absorption A-band, has been studied by combining resonance-enhanced multiphoton ionization (REMPI) detection of atomic photofragments I() and I*() and of pulsed slice imaging. Detailed examination of the total translational energy distributions of both atomic photofragments has been combined with stereodynamical information on the process obtained from the anisotropy β and alignment (∥) and Re[(∥, ⊥)] parameters to provide a description of the role played by the molecular structure of alkyl iodides in adiabatic and, especially, in nonadiabatic photodissociation dynamics through conical intersections or avoided crossings. The present results suggest that the linear structures couple more efficiently with the pure C-I reaction coordinate, whereas for the branched structures, the coupling with additional vibrational (bending) modes gains importance, showing the dissociation process a multidimensional character. In addition, a large degree of cofragment rotational alignment has been found for the small linear CHI and CHI and, unexpectedly, for the branched -CHI ( symmetry), whereas the rest of the alkyl iodides show low alignment parameters.

摘要

这项工作代表了在理解烷基碘在第一吸收带中广泛研究的光动力学方面向前迈出的一步。通过结合对原子光碎片I()和I*()的共振增强多光子电离(REMPI)检测以及脉冲切片成像,研究了几种烷基碘(RI)在254和268 nm激发波长下的紫外(UV)光解离,这些波长对应于第一吸收A带的最大值,具体为一系列R = CH、 = 1 - 4的直链和支链分子。对两个原子光碎片的总平动能量分布的详细研究与从各向异性β以及取向(∥)和Re[(∥, ⊥)]参数获得的关于该过程的立体动力学信息相结合,以描述烷基碘的分子结构在绝热特别是非绝热光解离动力学中通过锥形交叉或避免交叉所起的作用。目前的结果表明,线性结构与纯C - I反应坐标的耦合更有效,而对于支链结构,与额外振动(弯曲)模式的耦合变得重要,表明解离过程具有多维特征。此外,对于小的线性CHI和CHI,以及出乎意料的是对于支链 - CHI(对称性),发现了很大程度的共碎片旋转取向,而其余的烷基碘显示出低取向参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee18/11457215/fdd44112a326/jp4c02217_0001.jpg

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