School of Chemistry and Chemical Engineering, Chongqing University, Daxuecheng South Rd. 55, Chongqing, 401331, China.
Scuola Normale Superiore, Piazza dei Cavalieri 7, 56126, Pisa, Italy.
Angew Chem Int Ed Engl. 2022 Jan 3;61(1):e202113737. doi: 10.1002/anie.202113737. Epub 2021 Nov 23.
The 1:1 benzofuran-formaldehyde complex has been chosen as model system for analyzing π→π* interactions in supramolecular organizations involving heteroaromatic rings and carbonyl groups. A joint "rotational spectroscopy-quantum chemistry" strategy unveiled the dominant role of π→π* interactions in tuning the intermolecular interactions of such adduct. The exploration of the intermolecular potential energy surface led to the identification of 14 low-energy minima, with 4 stacked isomers being more stable than those linked by hydrogen bond or lone-pair→π interactions. All energy minima are separated by loose transition states, thus suggesting an effective relaxation to the global minimum under the experimental conditions. This expectation has been confirmed by the experimental detection of only one species, which was unambiguously assigned owing to the computation of accurate spectroscopic parameters and the characterization of 11 isotopologues. The large number of isotopic species opened the way to the determination of the first semi-experimental equilibrium structure for a molecular complex of such a dimension.
1:1 苯并呋喃-甲醛配合物已被选为分析涉及杂芳环和羰基的超分子组织中π→π相互作用的模型体系。“旋转光谱-量子化学”联合策略揭示了π→π相互作用在调节此类加合物的分子间相互作用中的主导作用。对分子间势能面的探索导致确定了 14 个低能极小值,其中 4 个堆叠的异构体比通过氢键或孤对-π 相互作用连接的异构体更稳定。所有的能量极小值都被松散的过渡态隔开,因此在实验条件下,这表明可以有效地松弛到全局最小值。这一预期得到了实验检测结果的证实,实验只检测到了一种物质,由于准确计算了光谱参数并对 11 种同位素进行了表征,因此可以明确地对其进行归属。大量的同位素种类为确定此类尺寸的分子配合物的第一个半实验平衡结构开辟了道路。