Gupta Surabhi, Cummings Charlotte N, Walker Nicholas R, Arunan Elangannan
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore, 560012, India.
Chemistry-School of Natural and Environmental Sciences, Newcastle University, Bedson Building, Newcastle-upon-Tyne NE1 7RU, UK.
Phys Chem Chem Phys. 2024 Jul 24;26(29):19795-19811. doi: 10.1039/d4cp01916d.
The microwave spectra of five isotopologues of phenylacetylene⋯methanol complex, CHCCH⋯CHOH, CHCCH⋯CHOD, CHCCH⋯CDOD, CHCCD⋯CHOH and CHCCH⋯CHOH, have been observed through Fourier transform microwave spectroscopy. Rotational spectra unambiguously unveil a specific structural arrangement characterised by dual interactions between the phenylacetylene and methanol. CHOH serves as a hydrogen bond donor to the acetylenic π-cloud while concurrently accepting a hydrogen bond from the C-H group of the PhAc moiety. The fitted rotational constants align closely with the structural configuration computed at the B3LYP-D3/aug-cc-pVDZ level of theory. The transitions of all isotopologues exhibit doublets owing to the methyl group's internal rotation within the methanol molecule. Comprehensive computational analyses, including natural bond orbital (NBO) analysis, atoms in molecules (AIM) theory, and non-covalent interactions (NCI) index plots, reveal the coexistence of both O-H⋯π and C-H⋯O hydrogen bonds within the complex. Symmetry adapted perturbation theory with density functional theory (SAPT-DFT) calculations performed on the experimentally determined geometry provide an insight into the prominent role of electrostatic interactions in stabilising the overall structural arrangement.
通过傅里叶变换微波光谱法观测了苯乙炔⋯甲醇络合物CHCCH⋯CHOH、CHCCH⋯CHOD、CHCCH⋯CDOD、CHCCD⋯CHOH和CHCCH⋯CHOH的五种同位素变体的微波光谱。旋转光谱明确揭示了一种特定的结构排列,其特征是苯乙炔和甲醇之间存在双重相互作用。CHOH作为氢键供体作用于炔键的π云,同时从PhAc部分的C-H基团接受氢键。拟合的旋转常数与在B3LYP-D3/aug-cc-pVDZ理论水平计算的结构构型密切相符。由于甲醇分子内甲基的内旋转,所有同位素变体的跃迁均呈现双峰。包括自然键轨道(NBO)分析、分子中的原子(AIM)理论和非共价相互作用(NCI)指数图在内的综合计算分析表明,该络合物中同时存在O-H⋯π和C-H⋯O氢键。对实验测定的几何结构进行的密度泛函理论对称适配微扰理论(SAPT-DFT)计算,深入了解了静电相互作用在稳定整体结构排列中的重要作用。