Graduate School of Science and Technology, Shizuoka University, 836 Oya, Suruga-ku, Shizuoka 422-8529, Japan.
J Phys Chem A. 2011 Mar 17;115(10):1869-77. doi: 10.1021/jp110325q. Epub 2011 Feb 20.
The rotational spectra of NiCO and PdCO in the ground and ν(2) excited vibrational states were observed by employing a source-modulated microwave spectrometer. The NiCO and PdCO molecules were generated in a free space cell by the sputtering reaction of nickel and palladium sheets, respectively, lining the inner surface of a stainless steel cathode with a dc glow plasma of CO and Ar. The molecular constants of NiCO and PdCO were determined by least-squares analysis. By force field analysis for the molecular constants of not only NiCO and PdCO but also of PtCO as previously reported, the harmonic force constants were determined for these three group 10 metal monocarbonyls. The vibrational wavenumbers derived for the lower M-C stretching vibrations were in good agreement with those obtained from the IR spectra in noble gas matrices and those predicted by several quantum chemical calculations published in the past. The bending vibrational wavenumbers derived by the force field analysis were also consistent with most quantum chemical calculations previously reported, but showed systematic discrepancies from the matrix IR values by about 40 cm(-1), even after reassignment (ν(2) band → 2ν(2) band) of the matrix IR spectra of PdCO and PtCO.
采用源调制微波光谱仪观察了 NiCO 和 PdCO 在基态和 ν(2)激发振动态下的旋转光谱。NiCO 和 PdCO 分子分别通过溅射反应产生,镍和钯片分别在内表面镀有直流辉光等离子体的不锈钢阴极上镀镍和钯,其中 CO 和 Ar。通过最小二乘法分析确定了 NiCO 和 PdCO 的分子常数。通过对 NiCO、PdCO 和先前报道的 PtCO 的分子常数进行力场分析,确定了这三种第 10 族金属单羰基的谐用力常数。推导的较低 M-C 伸缩振动的振动波数与在惰性气体基质中的红外光谱以及过去发表的几个量子化学计算中预测的波数非常吻合。通过力场分析得出的弯曲振动波数也与以前大多数量子化学计算一致,但即使经过 PdCO 和 PtCO 矩阵 IR 光谱的重新分配(ν(2)带→2ν(2)带),也与矩阵 IR 值存在约 40cm(-1)的系统差异。