Rudić Svemir, Merritt Jeremy M, Miller Roger E
Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
Phys Chem Chem Phys. 2009 Jul 14;11(26):5345-52. doi: 10.1039/b817484a. Epub 2009 Apr 20.
The weakly bound CH(3)H(2)O radical complex has been investigated by infrared laser spectroscopy. The complex is stabilized in helium nanodroplets and prepared by sequential pick up of a methyl radical and water molecule. Partially rotationally resolved spectra corresponding to the v = 1 <-- 0 excitation of the symmetric H(2)O stretching vibration within the complex show a significant red shift (25.06 cm(-1)) when compared with the symmetric stretch of H(2)O monomer, in agreement with the hydrogen bonded like structure derived by theory. Additional broad features were observed in the region predicted by theory for the antisymmetric stretch supporting our assignment. The B rotational constant is found to be 3.03 times smaller than predicted by ab initio calculations, with the reduction being attributed to the effects of helium solvation. The permanent electric dipole moment of the complex is experimentally determined to be 2.1 +/- 0.3 D using Stark spectroscopy. Ab initio calculations are also reported that provide support to the experimental results, as well as investigate the nature of large amplitude vibrational motion within the complex.
通过红外激光光谱对弱束缚的CH(3)H(2)O自由基复合物进行了研究。该复合物在氦纳米液滴中得以稳定,并通过依次捕获甲基自由基和水分子来制备。与复合物中对称H(2)O伸缩振动的v = 1 ← 0激发相对应的部分转动分辨光谱显示,与H(2)O单体的对称伸缩相比有显著的红移(25.06 cm(-1)),这与理论推导的氢键状结构相符。在理论预测的反对称伸缩区域观察到了额外的宽峰特征,支持了我们的归属。发现B转动常数比从头算计算预测的小3.03倍,这种减小归因于氦溶剂化的影响。利用斯塔克光谱通过实验确定该复合物的永久电偶极矩为2.1±0.3 D。还报道了从头算计算,其为实验结果提供了支持,并研究了复合物内大幅度振动运动的性质。