Mäkinen Marko, Vainiotalo Pirjo, Rissanen Kari
Department of Chemistry, University of Joensuu, Finland.
J Am Soc Mass Spectrom. 2002 Jul;13(7):851-61. doi: 10.1016/S1044-0305(02)00382-3.
Electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry (ESI-FTICRMS) with additional ab initio calculations were used to examine the alkali metal cation binding selectivity (i.e., molecular recognition) and host properties of tetraethyl resorcarene (1) and its per-methylated derivative (2). The significance of intramolecular hydrogen bonding for the crown conformation was demonstrated. The presence of intramolecular flip-flop hydrogen bonding in 1 was confirmed both with calculations and in ND3-exchange experiments. All the alkali metal cations formed host-guest complexes by docking inside the cavity of the host. Complexation with the larger cations, especially Cs+, was favored. All the alkali metal cations also formed dimeric resorcarene capsules with 1. The capsules were directly H-bonded species, with no linking solvent molecules. ND3-exchange experiments and molecular modeling revealed the significance of direct intermolecular H-bonding for the crown conformation of 1 and stability of the capsule structure.
采用电喷雾电离傅里叶变换离子回旋共振质谱法(ESI-FTICRMS)并结合从头算计算,研究了四乙基间苯二酚杯芳烃(1)及其全甲基化衍生物(2)的碱金属阳离子结合选择性(即分子识别)和主体性质。证明了分子内氢键对冠醚构象的重要性。通过计算和ND₃交换实验证实了1中存在分子内翻转氢键。所有碱金属阳离子都通过对接在主体腔内形成了主客体配合物。与较大的阳离子(尤其是Cs⁺)形成配合物更有利。所有碱金属阳离子还与1形成了二聚间苯二酚杯芳烃胶囊。这些胶囊是直接通过氢键结合的物种,没有连接溶剂分子。ND₃交换实验和分子模拟揭示了直接分子间氢键对1的冠醚构象和胶囊结构稳定性的重要性。