Jiang Ling, Xu Qiang
National Institute of Advanced Industrial Science and Technology (AIST), Ikeda, Osaka 563-8577, Japan.
J Phys Chem A. 2007 May 3;111(17):3271-7. doi: 10.1021/jp0683667. Epub 2007 Apr 7.
Reactions of laser-ablated lanthanum and yttrium atoms with carbon monoxide molecules in solid neon have been investigated using matrix-isolation infrared spectroscopy. The M(CO)x and MCO+ (M = La, Y; x = 1-4) molecules have been formed and identified on the basis of isotopic shifts, mixed isotopic splitting patterns, and CCl4-doping experiments. Density functional theory calculations have been performed on these lanthanum and yttrium carbonyls. The agreement between the experimental and calculated vibrational frequencies, relative absorption intensities, and isotopic shifts substantiates the identification of these carbonyls from the matrix infrared spectrum. The present study reveals that the C-O stretching vibrational frequencies of MCO+ decrease from Sc to La, which indicates an increasing in metal d orbital --> CO pi* back-donation in this series.
利用基质隔离红外光谱法研究了在固体氖中激光烧蚀的镧原子和钇原子与一氧化碳分子的反应。基于同位素位移、混合同位素分裂模式和四氯化碳掺杂实验,已形成并鉴定出M(CO)x和MCO⁺(M = La、Y;x = 1 - 4)分子。对这些镧和钇的羰基化合物进行了密度泛函理论计算。实验和计算得到的振动频率、相对吸收强度以及同位素位移之间的一致性证实了从基质红外光谱中对这些羰基化合物的鉴定。本研究表明,MCO⁺的C - O伸缩振动频率从Sc到La逐渐降低,这表明在该系列中金属d轨道→CO π*反馈π键作用增强。