Liu Zongyuan, Trindle Carl O, Gu Quanli, Wu Wei, Su Peifeng
The State Key Laboratory of Physical Chemistry of Solid Surfaces, Fujian Provincial Key Laboratory of Theoretical and Computational Chemistry, and College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, Fujian 361005, China.
Phys Chem Chem Phys. 2017 Sep 27;19(37):25260-25269. doi: 10.1039/c7cp03491a.
The neutral and cationic forms of tryptamine-water dimer present a variety of noncovalent interactions. To characterize these interactions, a series of complementary methods, including the quantum theory of atoms in molecules, noncovalent interaction plots, natural bond orbital analysis, and energy decomposition analysis, were used. For the first time, the existence of the three intermolecular H-bonds in the conformer-locked tryptamine-water dimer A-H2O are identified, highlighting a single water's role as one proton donor and two proton acceptors as it binds to tryptamine. Furthermore, upon threshold ionization of the A-H2O dimer, the network of the three intermolecular H-bonds is indeed preserved while the individual H-bonds' binding strengths are subject to change; this is attributed to the existence of the optically accessible minimum energy isomer A+-H2O in the cation. In addition, it is found that the global minimum energy isomer H+-H2O contains a single intermolecular H-bond, but is more stable, by ca. 3 kcal mol, than the local minimum energy isomer A+-H2O; this is due to the stronger intramolecular interaction of H+-H2O as opposed to A+-H2O.
色胺 - 水二聚体的中性和阳离子形式呈现出多种非共价相互作用。为了表征这些相互作用,使用了一系列互补方法,包括分子中的原子量子理论、非共价相互作用图、自然键轨道分析和能量分解分析。首次在构象锁定的色胺 - 水二聚体A - H₂O中鉴定出三个分子间氢键的存在,突出了单个水分子在与色胺结合时作为一个质子供体和两个质子受体的作用。此外,在A - H₂O二聚体的阈值电离时,三个分子间氢键的网络确实得以保留,而各个氢键的结合强度会发生变化;这归因于阳离子中存在光学可及的最低能量异构体A⁺ - H₂O。此外,发现全局最低能量异构体H⁺ - H₂O包含单个分子间氢键,但比局部最低能量异构体A⁺ - H₂O更稳定,大约稳定3千卡/摩尔;这是由于H⁺ - H₂O与A⁺ - H₂O相比具有更强的分子内相互作用。