Le Barbu-Debus Katia, Guchhait Nikhil, Zehnacker-Rentien Anne
Laboratoire de Photophysique Moléculaire, CNRS UPR 3361, Bâtiment 210-Université Paris Sud, F91405 ORSAY, Cedex, France.
Phys Chem Chem Phys. 2007 Aug 28;9(32):4465-71. doi: 10.1039/b705650h. Epub 2007 Jun 12.
The role of conformational isomerism in molecular interaction has been studied using the example of jet-cooled complexes of (+/-)-cis-1-amino-indan-2-ol with water. The two formerly evidenced conformers of (+/-)-cis-1-amino-indan-2-ol easily form hydrates and dihydrates, which have been studied by means of laser-induced fluorescence and IR/UV double resonance spectroscopy, as well as ab initio calculations. All the 1 : 1 and 1 : 2 complexes with water evidenced in this work involve "ring" structures, in which the water monomer or dimer acts as an acceptor from the NH(2) and a donor to the OH groups of (+/-)-cis-1-amino-indan-2-ol. However, the water lies externally to the indan frame in the hydrates of conformer I of (+/-)-cis-1-amino-indan-2-ol, which possesses axial NH(2) and equatorial OH groups, and above it for the hydrates with the less stable conformer II, with equatorial NH(2) and axial OH groups. Consequently, the different steric constraints which exist in the two conformers result in different hydrogen bond topologies, with an additional OH[dot dot dot]pi interaction for the hydrates of conformer II.
以(±)-顺式-1-氨基茚满-2-醇与水的喷射冷却复合物为例,研究了构象异构在分子相互作用中的作用。(±)-顺式-1-氨基茚满-2-醇先前已证实的两种构象很容易形成水合物和二水合物,已通过激光诱导荧光和红外/紫外双共振光谱以及从头算计算对其进行了研究。在这项工作中证实的所有与水形成的1:1和1:2复合物都涉及“环”结构,其中水单体或二聚体充当来自NH₂的受体和(±)-顺式-1-氨基茚满-2-醇的OH基团的供体。然而,在具有轴向NH₂和赤道OH基团的(±)-顺式-1-氨基茚满-2-醇构象体I的水合物中,水位于茚满骨架外部,而对于具有较不稳定构象体II(赤道NH₂和轴向OH基团)的水合物,水位于其上方。因此,两种构象中存在的不同空间限制导致不同的氢键拓扑结构,构象体II的水合物存在额外的OH…π相互作用。