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丁二酮及其簇阴离子的光电子能谱

Photoelectron Spectroscopy of Biacetyl and Its Cluster Anions.

作者信息

Dauletyarov Yerbolat, Wallace Adam A, Blackstone Christopher C, Sanov Andrei

机构信息

Department of Chemistry and Biochemistry , The University of Arizona , Tucson , Arizona 85721 , United States.

出版信息

J Phys Chem A. 2019 May 16;123(19):4158-4167. doi: 10.1021/acs.jpca.9b01302. Epub 2019 May 7.

Abstract

Photoelectron spectroscopy of the biacetyl (dimethylglyoxal) anion reveals the properties of the ground singlet and lowest triplet electronic states of the neutral biacetyl (BA) molecule. Due to the broad and congested nature of the singlet transition, which peaks at a vertical detachment energy VDE = 1.12(5) eV, only an upper bound of the adiabatic electron affinity of BA could be determined: EA(BA) < 0.7 eV. A narrower and more structured triplet band peaking at VDE = 3.17(2) eV reveals the adiabatic electron binding energy of the triplet to be 3.05(2) eV. These results are in good agreement with ab initio (coupled-cluster) calculations. The lowest-energy structures of the anion, singlet, and triplet states of biacetyl are characterized by different orientations of the methyl groups within the molecular frame. In the ground singlet state of neutral BA, the methyl torsion is offset by ∼60° compared to that of the anion, while in the triplet the methyl orientation is similar to that of the anion. Photoelectron spectra of the cluster anions reveal that the intermolecular interactions in the homogeneously solvated (BA) clusters are significantly stronger than the interactions of BA with NO or even of BA with HO. To account for these observations, π-π bonded structures of the dimer and trimer anions of biacetyl are proposed based on density-functional theory calculations. The analysis of the proposed structures indicates that the negative charge in the (BA) cluster anions, at least in the dimer and the trimer, is significantly delocalized between all BA moieties present and there is a significant degree of covalent bonding within the cluster.

摘要

丁二酮(二甲基乙二醛)阴离子的光电子能谱揭示了中性丁二酮(BA)分子基态单重态和最低三重态电子态的性质。由于单重态跃迁具有宽且拥挤的特性,其峰值垂直脱附能VDE = 1.12(5) eV,因此只能确定BA绝热电子亲和势的上限:EA(BA) < 0.7 eV。在VDE = 3.17(2) eV处出现的较窄且结构更清晰的三重态能带表明三重态的绝热电子结合能为3.05(2) eV。这些结果与从头算(耦合簇)计算结果吻合良好。丁二酮阴离子、单重态和三重态的最低能量结构的特征在于分子框架内甲基基团的不同取向。在中性BA的基态单重态中,甲基扭转相对于阴离子的扭转偏移约60°,而在三重态中甲基取向与阴离子相似。簇阴离子的光电子能谱表明,均匀溶剂化的(BA)簇中的分子间相互作用明显强于BA与NO的相互作用,甚至强于BA与HO的相互作用。为了解释这些观察结果,基于密度泛函理论计算提出了丁二酮二聚体和三聚体阴离子的π-π键合结构。对所提出结构的分析表明,(BA)簇阴离子中的负电荷,至少在二聚体和三聚体中,在所有存在的BA部分之间显著离域,并且簇内存在显著程度的共价键。

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