Department of Chemistry, University of Virginia, Charlottesville, Virginia 22904-4319, USA.
Dalton Trans. 2012 Oct 14;41(38):11706-15. doi: 10.1039/c2dt31223a. Epub 2012 Aug 17.
The isolated group 4 metal oxydifluoride molecules OMF(2) (M = Ti, Zr, Hf) with terminal oxo groups are produced specifically on the spontaneous reactions of metal atoms with OF(2) through annealing in solid argon. The product structures and vibrational spectra are characterized using matrix isolation infrared spectroscopy as well as B3LYP density functional and CCSD(T) frequency calculations. OTiF(2) is predicted to have a planar structure while both OZrF(2) and OHfF(2) possess pyramidal structures, all with singlet ground states. Three infrared absorptions are observed for each product molecule, one M-O and two M-F stretching modes, and assignments of these molecules are further supported by the corresponding (18)O shifts. The molecular orbitals of the group 4 OMF(2) molecules show triple bond character for the terminal oxo groups, which are also supported by an NBO analysis. These molecular orbitals include a σ bond (O(2p) + Ti(sd hybrid)), a normal electron pair π bond (O(2p) + Ti(d)), and a dative π bond arising from O lone pair donation to the overlapping Ti d orbital. The M-O bond dissociation energies for OMF(2) are comparable to those in the diatomic oxide molecules. The OTiF intermediate is also observed through two slightly lower frequency bond stretching modes, and its yield is increased in complementary TiO + F(2) experiments. Finally, the formation of group 4 OMF(2) molecules is highly exothermic due to the weak O-F bonds in OF(2) as well as the strong new MO and M-F bonds formed.
孤立的四价金属氧二氟化物分子 OMF(2)(M = Ti、Zr、Hf)带有末端的氧基团,是通过金属原子与 OF(2) 在固体氩气中的退火反应而专门生成的。使用矩阵隔离红外光谱以及 B3LYP 密度泛函和 CCSD(T)频率计算对产物结构和振动光谱进行了表征。OTiF(2) 被预测为具有平面结构,而 OZrF(2) 和 OHfF(2) 则具有金字塔结构,所有这些结构都具有单重基态。对于每个产物分子,都观察到三个红外吸收,一个 M-O 和两个 M-F 伸缩模式,这些分子的分配进一步得到了相应的(18)O 位移的支持。四价金属 OMF(2) 分子的分子轨道显示出末端氧基团的三键特征,这也得到了 NBO 分析的支持。这些分子轨道包括一个σ键(O(2p) + Ti(sd 杂化轨道))、一个正常电子对π键(O(2p) + Ti(d))和一个来自 O 孤对向重叠 Ti d 轨道的给予的 dative π键。OMF(2) 的 M-O 键离解能与双原子氧化物分子中的离解能相当。OTiF 中间体也通过两个略低频率的键伸缩模式被观察到,并且在补充的 TiO + F(2) 实验中,其产率增加。最后,由于 OF(2) 中的 O-F 键较弱以及形成的新 MO 和 M-F 键较强,四价金属 OMF(2) 分子的形成是高度放热的。