Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371, Singapore.
J Chem Phys. 2011 Jul 14;135(2):024501. doi: 10.1063/1.3606495.
The vibrational relaxation dynamics of the four infrared active carbonyl (CO) stretching normal modes of Os(3)(CO)(12) at 2068 cm(-1), 2034 cm(-1), 2014 cm(-1), and 2002 cm(-1) were measured using broad-band frequency resolved pump-probe spectroscopy. Transient absorption spectra of these modes were collected, and the fundamental, overtone, and combination bands were assigned. The frequency resolved pump-probe traces measured at the fundamental frequencies for the four stretching normal modes exhibited marked differences: the two axial modes at frequencies of 2068 cm(-1) and 2034 cm(-1) yielded similar bi-exponential decay traces, while the two equatorial modes at 2014 cm(-1) and 2002 cm(-1) showed a rising component, in addition to a bi-exponential decay. Due to the independence of the axial and equatorial stretching modes, it is shown that the axial-equatorial combination anharmonicity constants are near zero. This results in the appearance of the pump-probe signals of these combination bands at the same frequencies as the fundamental transitions, thus leading to interference and the resultant anomalous rising features. If unaccounted for, these interferences may lead to erroneous conclusions about the dynamics of these vibrational stretches. To avoid such pitfalls, it is therefore imperative to resolve such ambiguities. A corrected dynamical picture of the equatorial modes can be obtained by varying the center frequency of the pump pulse. The four modes have a slow vibrational excited population decay time of between 400 to 600 ps. We observe no obvious direct vibrational energy transfer between the axial and equatorial CO stretching modes.
Os(3)(CO)(12) 的四个红外活性羰基 (CO) 伸缩振动模式在 2068 cm(-1)、2034 cm(-1)、2014 cm(-1) 和 2002 cm(-1) 的振动弛豫动力学通过宽带频率分辨泵浦-探针光谱法进行了测量。收集了这些模式的瞬态吸收光谱,并对基频、倍频和组合频带进行了分配。在四个伸缩振动模式的基频下测量的频率分辨泵浦-探针轨迹显示出明显的差异:频率为 2068 cm(-1) 和 2034 cm(-1) 的两个轴向模式产生相似的双指数衰减轨迹,而频率为 2014 cm(-1) 和 2002 cm(-1) 的两个赤道模式除了双指数衰减外,还显示出一个上升分量。由于轴向和赤道伸缩模式的独立性,表明轴向-赤道组合非谐常数接近零。这导致这些组合带的泵浦-探针信号出现在与基态跃迁相同的频率,从而导致干扰和由此产生的异常上升特征。如果不加以考虑,这些干扰可能会导致对这些振动伸展动力学的错误结论。为了避免这种陷阱,因此必须解决这些歧义。通过改变泵浦脉冲的中心频率,可以获得赤道模式的修正动力学图像。四个模式的振动激发态种群衰减时间在 400 到 600 ps 之间。我们没有观察到轴向和赤道 CO 伸缩模式之间明显的直接振动能量转移。