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Matrix-Isolated Diglycolic Anhydride: Vibrational Spectra and Photochemical Reactivity

机译:基质分离的二乙醇酸酐:振动光谱和光化学反应性

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摘要

The structure of diglycolic anhydride (1,4-dioxane-2,6-dione; DGAn) isolated in a low-temperature argon matrix at 10 K was studied by means of FTIR spectroscopy. Interpretation of the experimental vibrational spectrum was assisted by theoretical calculations at the DFT(B3LYP)/aug-cc-pVTZ level. The optimized structure of the isolated DGAn molecule adopts an envelope conformation, which was found to resemble closely the structure of DGAn in a crystal. The UV-induced (λ > 240 nm) photolysis of the matrix-isolated compound was also investigated. In order to identify the main species resulting from irradiation of the monomeric DGAn, a comparison between the DFT(B3LYP)/aug-cc-pVTZ calculated spectra of the putative products and the experimental data was carried out. The observed photoproducts can be explained by a model involving four channels: (a) 1,3-dioxolan-4-one + CO; (b) CO2 + CO + oxirane; (c) formaldehyde + ketene + CO2; (d) oxiran-2-one + oxiran-2-one. As a whole, the experiments indicated that the C−O−C bridge, connecting the two CO groups, is the most reactive fragment in the molecule excited with UV light. This observation was confirmed by the natural bond orbital (NBO) analysis revealing that the most important NBO interactions are those between the carbonyl groups and the adjacent C−O and C−C bonds.
机译:通过FTIR光谱研究了在低温氩气中于10 K下分离出的二乙醇酸酐(1,4-二恶烷-2,6-二酮; DGAn)的结构。在DFT(B3LYP)/ aug-cc-pVTZ水平进行理论计算有助于对实验振动光谱进行解释。分离的DGAn分子的优化结构具有包膜构象,该结构与晶体中DGAn的结构非常相似。还研究了紫外光诱导的(λ> 240 nm)基质分离的化合物的光解。为了鉴定由单体DGAn辐射产生的主要物种,对推定产物的DFT(B3LYP)/ aug-cc-pVTZ计算得出的光谱与实验数据进行了比较。可以通过涉及四个通道的模型来解释观察到的光产物:(a)1,3-二氧戊环-4-酮+一氧化碳; (b)CO2 + CO +环氧乙烷; (c)甲醛+乙烯酮+ CO2; (d)oxiran-2-one + oxiran-2-one。总体而言,实验表明,连接两个CO基团的C-OC桥是被紫外线激发的分子中反应性最高的片段。天然键轨道(NBO)分析证实了这一观察结果,该分析揭示了最重要的NBO相互作用是羰基与相邻的C-O和C-C键之间的相互作用。

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