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酸碱形式主义扩展到O-H···S氢键相互作用的激发态。

Acid-Base Formalism Extended to Excited State for O-H···S Hydrogen Bonding Interaction.

作者信息

Bhattacharyya Surjendu, Roy Ved Prakash, Wategaonkar Sanjay

机构信息

Department of Chemical Sciences, Tata Institute of Fundamental Research , Homi Bhabha Road, Colaba, Mumbai 400 005, India.

出版信息

J Phys Chem A. 2016 Sep 8;120(35):6902-16. doi: 10.1021/acs.jpca.6b04396. Epub 2016 Aug 26.

Abstract

Hydrogen bond can be regarded as an interaction between a base and a proton covalently bound to another base. In this context the strength of hydrogen bond scales with the proton affinity of the acceptor base and the pKa of the donor, i.e., it follows the acid-base formalism. This has been amply demonstrated in conventional hydrogen bonds. Is this also true for the unconventional hydrogen bonds involving lesser electronegative elements such as sulfur atom? In our previous work, we had established that the strength of O-H···S hydrogen bonding (HB) interaction scales with the proton affinity (PA) of the acceptor. In this work, we have investigated the other counterpart, i.e., the H-bonding interaction between the photoacids with different pKa values with a common base such as the H2O and H2S. The 1:1 complexes of five para substituted phenols p-aminophenol, p-cresol, p-fluorophenol, p-chlorophenol, and p-cyanophenol with H2O and H2S were investigated experimentally and computationally. The investigations were also extended to the excited states. The experimental observations of the spectral shifts in the O-H stretching frequency and the S1-S0 band origins were correlated with the pKa of the donors. Ab initio calculations at the MP2 and various dispersion corrected density functional levels of theory were performed to compute the dissociation energy (D0) of the complexes. The quantum theory of atoms in molecules (QTAIM), noncovalent interaction (NCI) method, natural bonding orbital (NBO) analysis, and natural decomposition analysis (NEDA) were carried out for further characterization of HB interaction. The O-H stretching frequency red shifts and the dissociation energies were found to be lower for the O-H···S hydrogen bonded systems compared to those for the O-H···O H-bound systems. Despite being dominated by the dispersion interaction the O-H···S interaction in the H2S complexes also conformed to the acid-base formalism, i.e., the D0 and the O-H red shift scaled with the pKa of the donor, similar to that observed in the O-H···O interaction. However, the two classes of H-bonds follow different correlations. In addition we also discuss the nuances associated with the similarity and differences in the hydrogen bonding properties of the two classes in the ground electronic state as well as in the excited state.

摘要

氢键可被视为一个碱基与一个共价结合于另一个碱基的质子之间的相互作用。在此背景下,氢键的强度与受体碱基的质子亲和势以及供体的pKa相关,即遵循酸碱形式理论。这在传统氢键中已得到充分证明。对于涉及电负性较小的元素(如硫原子)的非常规氢键,情况是否也是如此呢?在我们之前的工作中,我们已确定O-H···S氢键(HB)相互作用的强度与受体的质子亲和势(PA)相关。在这项工作中,我们研究了另一个对应情况,即具有不同pKa值的光酸与诸如H₂O和H₂S等常见碱基之间的氢键相互作用。实验和计算研究了对氨基苯酚、对甲酚、对氟苯酚、对氯苯酚和对氰基苯酚这五种对位取代苯酚与H₂O和H₂S形成的1:1配合物。研究还扩展到了激发态。O-H伸缩频率和S₁ - S₀能带起源的光谱位移的实验观测结果与供体的pKa相关。在MP2以及各种色散校正密度泛函理论水平上进行了从头计算,以计算配合物的解离能(D₀)。进行了分子中的原子量子理论(QTAIM)、非共价相互作用(NCI)方法、自然键轨道(NBO)分析和自然分解分析(NEDA),以进一步表征HB相互作用。结果发现,与O-H···O键合体系相比,O-H···S氢键体系的O-H伸缩频率红移和解离能更低。尽管H₂S配合物中的O-H···S相互作用主要由色散相互作用主导,但它也符合酸碱形式理论,即D₀和O-H红移与供体的pKa相关,这与在O-H···O相互作用中观察到的情况类似。然而,这两类氢键遵循不同的相关性。此外,我们还讨论了这两类氢键在基态以及激发态下氢键性质的异同相关的细微差别。

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