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通过光解离[六氟丙酮]自由基阴离子揭示六氟丙酮(HFA)的电子亲和能和电子结构

Electron Affinity and Electronic Structure of Hexafluoroacetone (HFA) Revealed by Photodetaching the [HFA] Radical Anion.

作者信息

Wang Lei, Han Jia, Yuan Qinqin, Cao Wenjin, Zhou Xiaoguo, Liu Shilin, Wang Xue-Bin

机构信息

Hefei National Laboratory for Physical Sciences at the Microscale, Department of Chemical Physics, University of Science and Technology of China, Hefei 230026, Anhui, P. R. China.

Physical Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, United States.

出版信息

J Phys Chem A. 2021 Jan 28;125(3):746-753. doi: 10.1021/acs.jpca.0c08996. Epub 2020 Dec 9.

Abstract

A great deal of effort has been focused on developing a metal-free catalytic system for epoxidation of unreactive alkenes. Fluoroketones are thought as remarkably promising catalysts for epoxidation reactions. The combination of fluorinated alcohols and catalytic amounts of hexafluoroacetone (HFA) gives a versatile and effective medium for epoxidation of various olefins with hydrogen peroxide. However, the fundamental physicochemical properties of HFA remained largely unclear, although they were very important to understand the related interactions. Here, we performed a joint study on the electron affinity and electronic structure of HFA employing negative ion photoelectron (NIPE) spectroscopy and quantum chemistry calculations. Two distinct bands with complicated vibrational progressions were observed in the 193 nm NIPE spectrum. The adiabatic/vertical detachment energies (ADE/VDE) were derived to be 1.42/2.06 and 4.43/4.86 eV for the ground singlet state and excited triplet state, respectively. Using the optimized geometries and vibrational frequencies of the anion and the neutral, the Franck-Condon factors were calculated for electron detachments to produce HFA in its lowest singlet and triplet states. Good agreements are obtained hereby for both bands between the experimental and calculated NIPE spectra, when taking into account combination vibrational excitations, unequivocally revealing that HFA possesses a singlet ground state with a giant singlet-triplet energy difference (Δ). The electron affinity (EA) and Δ of HFA were therefore determined to be EA = 1.42 ± 0.02 eV and Δ = -3.01 eV.

摘要

大量的努力都集中在开发一种用于未反应烯烃环氧化的无金属催化体系上。氟代酮被认为是环氧化反应极具前景的催化剂。氟化醇与催化量的六氟丙酮(HFA)的组合为用过氧化氢对各种烯烃进行环氧化提供了一种通用且有效的介质。然而,尽管HFA的基本物理化学性质对于理解相关相互作用非常重要,但在很大程度上仍不清楚。在此,我们采用负离子光电子(NIPE)光谱和量子化学计算对HFA的电子亲和能和电子结构进行了联合研究。在193 nm的NIPE光谱中观察到了两个具有复杂振动进展的不同谱带。对于基态单重态和激发三重态,绝热/垂直脱离能(ADE/VDE)分别推导为1.42/2.06和4.43/4.86 eV。利用阴离子和中性分子的优化几何结构和振动频率,计算了电子脱离以产生处于最低单重态和三重态的HFA的弗兰克 - 康登因子。当考虑组合振动激发时,实验和计算的NIPE光谱在两个谱带方面都获得了良好的一致性,明确揭示HFA具有单重基态,单重态 - 三重态能量差(Δ)巨大。因此,HFA的电子亲和能(EA)和Δ被确定为EA = 1.42±0.02 eV和Δ = -3.01 eV。

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