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通过光电子能谱研究对二氟苯和对二甲苯对O(2)(-)和O(4)(-)的溶剂化作用。

Solvation of O(2)(-) and O(4)(-) by p-difluorobenzene and p-xylene studied by photoelectron spectroscopy.

作者信息

Kang Cheolhwa, Troyer Jenny L, Robertson Erika M, Rothgeb David W, Hossain Ekram, Wyrwas Richard B, Parmenter Charles S, Jarrold Caroline Chick

机构信息

Department of Chemistry, Indiana University, Bloomington, IN 47405, USA.

出版信息

J Chem Phys. 2008 Mar 14;128(10):104309. doi: 10.1063/1.2838849.

Abstract

Anion photoelectron spectra of the O(2)(-) . arene and O(4)(-) . arene complexes with p-xylene and p-difluorobenzene are presented and analyzed with the aid of calculations on the anions and corresponding neutrals. Relative to the adiabatic electron affinity of O(2), the O(2)(-) . arene spectra are blueshifted by 0.75-1 eV. Solvation energy alone does not account for this shift, and it is proposed that a repulsive portion of the neutral potential energy surface is accessed in the detachment, resulting in dissociative photodetachment. O(2)(-) is found to interact more strongly with the p-difluorobenzene than the p-xylene. The binding motif involves the O(2)(-) in plane with the arene, interacting via electron donation along nearby C-H bonds. A peak found at 4.36(2) eV in the photoelectron spectrum of O(2)(-) . p-difluorobenzene (p-DFB) is tentatively attributed to the charge transfer state, O(2)(-) . p-DFB(+). Spectra of O(4)(-) . arene complexes show less blueshift in electron binding energy relative to the spectrum of bare O(4)(-), which itself undergoes dissociative photodetachment. The striking similarity between the profiles of the O(4)(-) . arene complexes with the O(4)(-) spectrum suggests that the O(4)(-) molecule remains intact upon complex formation, and delocalization of the charge across the O(4)(-) molecule results in similar structures for the anion and neutral complexes.

摘要

给出了O(2)(-)·芳烃和O(4)(-)·芳烃与对二甲苯和对二氟苯形成的配合物的阴离子光电子能谱,并借助对阴离子和相应中性分子的计算进行了分析。相对于O(2)的绝热电子亲和能,O(2)(-)·芳烃光谱发生了0.75 - 1 eV的蓝移。仅溶剂化能无法解释这种位移,有人提出在离解过程中进入了中性势能面的排斥部分,导致解离光离解。发现O(2)(-)与对二氟苯的相互作用比对二甲苯更强。结合模式涉及与芳烃共面的O(2)(-),通过沿附近C - H键的电子给予相互作用。在O(2)(-)·对二氟苯(p - DFB)的光电子能谱中在4.36(2) eV处发现的一个峰初步归因于电荷转移态O(2)(-)·p - DFB(+)。O(4)(-)·芳烃配合物的光谱相对于裸O(4)(-)的光谱在电子结合能上显示出较小的蓝移,而裸O(4)(-)本身会发生解离光离解。O(4)(-)·芳烃配合物的谱图与O(4)(-)光谱之间惊人的相似性表明,O(4)(-)分子在形成配合物时保持完整,并且电荷在O(4)(-)分子上的离域导致阴离子和中性配合物具有相似的结构。

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