Suzuki S, Green P G, Bumgarner R E, Dasgupta S, Goddard W A, Blake G A
Science. 1992 Aug 14;257(5072):942-5. doi: 10.1126/science.257.5072.942.
Fully rotationally resolved spectra of three isotopic species of 1:1 clusters of benzene with water (H(2)O, D(2)O, and HDO) were fit to yield moments of inertia that demonstrate unambiguously that water is positioned above the benzene plane in nearly free internal rotation with both hydrogen atoms pointing toward the pi cloud. Ab initio calculations (MP2 level of electron correlation and 6-31 G(**) basis set with basis set superposition error corrections) predict a binding energy D(e) greater, similar 1.78 kilocalories per mole. In both the experimental and theoretical structures, water is situated nearly 1 angstrom within the van der Waals contacts of the monomers, a clear manifestation of hydrogen bond formation in this simple model of aqueous-pi electron interactions.
对苯与水(H₂O、D₂O和HDO)1:1簇合物的三种同位素物种的完全转动分辨光谱进行拟合,以得到转动惯量,这明确表明水位于苯平面上方,处于近乎自由的内旋转状态,两个氢原子都指向π电子云。从头算计算(电子相关的MP2水平和带有基组叠加误差校正的6-31G(**)基组)预测结合能D(e)更大,约为每摩尔1.78千卡。在实验结构和理论结构中,水都位于单体范德华接触范围内近1埃处,这在这个简单的水-π电子相互作用模型中是氢键形成的明显表现。