Department of Chemistry, University of Coimbra, Coimbra, Rua Larga 3004-535, Portugal.
J Am Chem Soc. 2011 Dec 21;133(50):20194-207. doi: 10.1021/ja2030646. Epub 2011 Nov 23.
Aggregation in hydroxyacetone (HA) is studied using low-temperature FTIR, supersonic jet expansion, and X-ray crystallographic (in situ cryocrystallization) techniques. Along with quantum chemical methods (MP2 and DFT), the experiments unravel the conformational preferences of HA upon aggregation to dimers and oligomers. The O-H···O═C intramolecular hydrogen bond present in the gas-phase monomer partially opens upon aggregation in supersonic expansions, giving rise to intermolecular cooperatively enhanced O-H···O-H hydrogen bonds in competition with isolated O-H···O═C hydrogen bonds. On the other hand, low-temperature IR studies on the neat solid and X-ray crystallographic data reveal that HA undergoes profound conformational changes upon crystallization, with the HOCC dihedral angle changing from ~0° in the gas phase to ~180° in the crystalline phase, hence giving rise to a completely new conformation. These conclusions are supported by theoretical calculations performed on the geometry derived from the crystalline phase.
采用低温傅里叶变换红外光谱(FTIR)、超声速射流膨胀和 X 射线晶体学(原位低温晶体生长)技术研究了羟基丙酮(HA)的聚集。结合量子化学方法(MP2 和 DFT),实验揭示了 HA 在聚集为二聚体和低聚物时的构象偏好。气相单体中存在的 O-H···O═C 分子内氢键在超声速膨胀中部分打开,导致分子间协同增强的 O-H···O-H 氢键与孤立的 O-H···O═C 氢键竞争。另一方面,关于纯固体的低温红外研究和 X 射线晶体学数据表明,HA 在结晶时经历了深刻的构象变化,HOCC 二面角从气相中的0°变为晶相中的180°,从而产生了全新的构象。这些结论得到了基于晶体相衍生的几何结构的理论计算的支持。