Cole-Filipiak Neil C, Troß Jan, Schrader Paul, McCaslin Laura M, Ramasesha Krupa
Combustion Research Facility, Sandia National Laboratories, Livermore, California 94550, United States.
ACS Phys Chem Au. 2024 Aug 1;4(6):605-609. doi: 10.1021/acsphyschemau.4c00033. eCollection 2024 Nov 27.
Herein, we report on the ultrafast photodissociation of nickel tetracarbonyl-a prototypical metal-ligand model system-at 197 nm. Using mid-infrared transient absorption spectroscopy to probe the bound C≡O stretching modes, we find evidence for the picosecond time scale production of highly vibronically excited nickel dicarbonyl and nickel monocarbonyl, in marked contrast with a prior investigation at 193 nm. Further spectral evolution with a 50 ps time constant suggests an additional dissociation step; the absence of any corresponding growth in signal strongly indicates the production of bare Ni, a heretofore unreported product from single-photon excitation of nickel tetracarbonyl. Thus, by probing the deep UV-induced photodynamics of a prototypical metal carbonyl, this Letter adds time-resolved spectroscopic signatures of these dynamics to the sparse literature at high excitation energies.
在此,我们报道了在197nm波长下四羰基镍(一种典型的金属 - 配体模型体系)的超快光解离过程。利用中红外瞬态吸收光谱探测C≡O键的伸缩振动模式,我们发现了皮秒时间尺度内产生高振动态激发的二羰基镍和一羰基镍的证据,这与之前在193nm波长下的研究形成显著对比。以50皮秒时间常数进行的进一步光谱演化表明存在额外的解离步骤;信号中没有任何相应的增长强烈表明产生了裸镍,这是此前单光子激发四羰基镍从未报道过的产物。因此,通过探测典型金属羰基化合物的深紫外诱导光动力学过程,本信函在高激发能下为这些动力学过程的时间分辨光谱特征增添了内容,丰富了这一稀少的文献资料。