Chivers Tristram, Oakley Richard T
Department of Chemistry, University of Calgary, Calgary, AB T2N 1N4, Canada.
Department of Chemistry, University of Waterloo, Waterloo, ON N2L 3G1, Canada.
Molecules. 2023 Jul 26;28(15):5654. doi: 10.3390/molecules28155654.
The potential involvement of polysulfide radical anions S is a recurring theme in discussions of the basic and applied chemistry of elemental sulfur. However, while the spectroscopic features for = 2 and 3 are well-established, information on the structures and optical characteristics of the larger congeners ( = 4-8) is sparse. To aid identification of these ephemeral species we have performed PCM-corrected DFT calculations to establish the preferred geometries for S ( = 4-8) in the polar media in which they are typically generated. TD-DFT calculations were then used to determine the number, nature and energies of the electronic excitations possible for these species. Numerical reliability of the approach was tested by comparison of the predicted and experimental excitation energies found for S and S. The low-energy (near-IR) transitions found for the two acyclic isomers of S (C and C symmetry) and for S (C symmetry) can be understood by extension of the simple HMO -only chain model that serves for S and S. By contrast, the excitations predicted for the -cyclic structures S ( = 6-8) are better described in terms of → * processes within a localized 2c-3e manifold.
多硫化物自由基阴离子S的潜在参与是元素硫基础化学和应用化学讨论中反复出现的主题。然而,虽然n = 2和3的光谱特征已得到充分确立,但关于较大同系物(n = 4 - 8)的结构和光学特性的信息却很稀少。为了帮助识别这些短暂存在的物种,我们进行了PCM校正的DFT计算,以确定S(n = 4 - 8)在其通常生成的极性介质中的优选几何结构。然后使用TD - DFT计算来确定这些物种可能的电子激发的数量、性质和能量。通过比较S₂⁻和S₃⁻的预测激发能和实验激发能,测试了该方法的数值可靠性。对于S₄²⁻(C₂和C₂ᵥ对称性)和S₅²⁻(C₂对称性)的两种无环异构体发现的低能量(近红外)跃迁,可以通过扩展适用于S₂⁻和S₃⁻的仅简单HMO链模型来理解。相比之下,对于环型结构Sₙ²⁻(n = 6 - 8)预测的激发,用局域化2c - 3e流形内的π → π*过程能更好地描述。