Rudić S, Merritt J M, Miller R E
Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
J Chem Phys. 2006 Mar 14;124(10):104305. doi: 10.1063/1.2170087.
The CH3-HCN and CD3-HCN radical complexes have been formed in helium nanodroplets by sequential pickup of a CH3 (CD3) radical and a HCN molecule and have been studied by high-resolution infrared laser spectroscopy. The complexes have a hydrogen-bonded structure with C3v symmetry, as inferred from the analysis of their rotationally resolved nu = 1 <-- 0 H-CN vibrational bands. The A rotational constants of the complexes are found to change significantly upon vibrational excitation of the C-H stretch of HCN within the complex, DeltaA = A'-A" = -0.04 cm(-1) (for CH3-HCN), whereas the B rotational constants are found to be 2.9 times smaller than that predicted by theory. The reduction in B can be attributed to the effects of helium solvation, whereas the large DeltaA is found to be a sensitive probe of the vibrational averaging dynamics of such weakly bound systems. The complex has a permanent electric dipole moment of 3.1 +/- 0.2 D, as measured by Stark spectroscopy. A vibration-vibration resonance is observed to couple the excited C-H stretching vibration of HCN within the complex to the lower-frequency C-H stretches of the methyl radical. Deuteration of the methyl radical was used to detune these levels from resonance, increasing the lifetime of the complex by a factor of 2. Ab initio calculations for the energies and molecular parameters of the stationary points on the CN+CH4 --> HCN+CH3 potential-energy surface are also presented.
通过依次俘获一个CH₃(CD₃)自由基和一个HCN分子,在氦纳米液滴中形成了CH₃-HCN和CD₃-HCN自由基复合物,并通过高分辨率红外激光光谱对其进行了研究。从对其转动分辨的ν = 1 ← 0 H-CN振动带的分析推断,这些复合物具有C₃v对称性的氢键结构。发现复合物的A转动常数在复合物内HCN的C-H伸缩振动激发时会发生显著变化,ΔA = A'-A" = -0.04 cm⁻¹(对于CH₃-HCN),而B转动常数比理论预测值小2.9倍。B的减小可归因于氦溶剂化的影响,而大的ΔA被发现是此类弱束缚系统振动平均动力学的灵敏探针。通过斯塔克光谱测量,该复合物的永久电偶极矩为3.1±0.2 D。观察到一个振动-振动共振,将复合物内HCN激发的C-H伸缩振动与甲基自由基的低频C-H伸缩振动耦合起来。甲基自由基的氘代用于使这些能级失谐,使复合物的寿命增加了2倍。还给出了关于CN+CH₄→HCN+CH₃势能面上驻点的能量和分子参数的从头算计算结果。