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低能电子与吡咯的碰撞。

Low-energy electron collisions with pyrrole.

机构信息

Instituto de Física Gleb Wataghin, Universidade Estadual de Campinas, 13083-970 Campinas, Sao Paulo, Brazil.

出版信息

J Chem Phys. 2010 May 28;132(20):204301. doi: 10.1063/1.3428620.

Abstract

We report cross sections for low-energy elastic electron scattering by pyrrole, obtained with the Schwinger multichannel method implemented with pseudopotentials. Our calculations indicate pi( *) shape resonances in the B(1) and A(2) symmetries, and two sigma( *) resonances in the A(1) symmetry (the system belongs to the C(2v) point group). The present assignments of pi( *) resonances are very close to those previously reported for the isoelectronic furan molecule, in agreement with electron transmission spectra. The lowest-lying sigma( *) anion is localized on the N-H bond and provides a dissociation coordinate similar to those found in the hydroxyl groups of organic acids and alcohols. This sigma(NH) ( *) resonance overlaps the higher-lying pi( *) resonance (possibly both pi( *) states) and could give rise to direct and indirect dissociation pathways, which arise from electron attachment to sigma( *) and pi( *) orbitals, respectively. The photochemistry of pyrrole and 9-H adenine is similar, in particular with respect to the photostability mechanism that allows for the dissipation of the photon energy, and we believe pyrrole would also be a suitable prototype for studies of dissociative electron attachment (DEA) to DNA bases. We point out the connection between the mechanisms of photostability and DEA since both arise from the occupation of sigma( *) and pi( *) orbitals in neutral excited states and in anion states, respectively.

摘要

我们报告了通过赝势施温格多通道方法获得的吡咯在低能弹性电子散射的截面。我们的计算表明在 B(1)和 A(2)对称性中有 pi( *)形状共振,在 A(1)对称性中有两个 sigma( *)共振(该体系属于 C(2v)点群)。目前对 pi( *)共振的分配非常接近与等电子呋喃分子以前报道的分配,这与电子传输谱一致。最低的 sigma( )阴离子定域在 N-H 键上,并提供了与有机酸和醇中的羟基相似的离解坐标。这个 sigma(NH)()共振与较高的 pi( *)共振(可能是两个 pi( *)态)重叠,并可能导致直接和间接的离解途径,这些途径分别来自于电子对 sigma( *)和 pi( *)轨道的附着。吡咯和 9-H 腺嘌呤的光化学性质相似,特别是在允许光子能量耗散的光稳定性机制方面,我们相信吡咯也将是研究 DNA 碱基的离解电子附着(DEA)的合适原型。我们指出光稳定性和 DEA 机制之间的联系,因为它们分别来自中性激发态和阴离子态中 sigma( *)和 pi( *)轨道的占据。

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