Rajapakshe Asha, Gruhn Nadine E, Lichtenberger Dennis L, Basta Rehan, Arif Atta M, Ernst Richard D
Center for Gas-Phase Electron Spectroscopy, Department of Chemistry, The University of Arizona, Tucson, Arizona 85721, USA.
J Am Chem Soc. 2004 Nov 3;126(43):14105-16. doi: 10.1021/ja040123+.
Molecules of the form Cp(6,6-dmch)ZrX(2) (Cp = eta(5)-cyclopentadienyl, X = Cl, Br, I; 6,6-dmch = eta(5)-6,6-dimethylcyclohexadienyl) have been synthesized, and the molecular and electronic structures have been investigated. These molecules allow direct comparison of the bonding and properties of pentadienyl and cyclopentadienyl ligands in the same high-oxidation-state metal complexes. Unlike the well-known Cp(2)ZrX(2) analogues, these Cp(6,6-dmch)ZrX(2) molecules are intensely colored, indicating significantly different relative energies of the frontier orbitals. Also unusual, the average Zr-C distances to the 6,6-dmch pentadienyl ligand are about 0.1 A longer than the average Zr-C distances to the cyclopentadienyl ligand for these Zr(IV) complexes, opposite of what is observed for the Zr(II) complex Cp(2,6,6-tmch)Zr(PMe(3))(2) (tmch = eta(5)-2,6,6-trimethylcyclohexadienyl), reflecting a dramatic reversal in the favorability of the bonding depending on the metal oxidation state. The experimental and computational results indicate that the color of the Cp(6,6-dmch)ZrX(2) complexes is due to a 6,6-dmch ligand-to-metal charge-transfer band. Compared to the Cp(2)ZrX(2) analogues, the Cp(6,6-dmch)ZrX(2) molecules have a considerably less stable HOMO that is pentadienyl-based and an essentially unchanged metal-based LUMO. Also, the lowest unoccupied orbital of pentadienyl is stabilized relative to cyclopentadienyl and becomes a better potential delta electron acceptor, thus contributing to the differences in structure and reactivity of the low-valent and high-valent metal complexes.
已合成出形式为Cp(6,6 - dmch)ZrX₂(Cp = η⁵ - 环戊二烯基,X = Cl、Br、I;6,6 - dmch = η⁵ - 6,6 - 二甲基环己二烯基)的分子,并对其分子结构和电子结构进行了研究。这些分子能够在相同的高氧化态金属配合物中直接比较戊二烯基和环戊二烯基配体的键合及性质。与著名的Cp₂ZrX₂类似物不同,这些Cp(6,6 - dmch)ZrX₂分子颜色很深,表明其前沿轨道的相对能量有显著差异。同样不寻常的是,对于这些Zr(IV)配合物,到6,6 - dmch戊二烯基配体的平均Zr - C距离比到环戊二烯基配体的平均Zr - C距离长约0.1 Å,这与Zr(II)配合物Cp(2,6,6 - tmch)Zr(PMe₃)₂(tmch = η⁵ - 2,6,6 - 三甲基环己二烯基)所观察到的情况相反,这反映出键合的有利性会根据金属氧化态发生显著反转。实验和计算结果表明,Cp(6,6 - dmch)ZrX₂配合物显色是由于6,6 - dmch配体到金属的电荷转移带。与Cp₂ZrX₂类似物相比,Cp(6,6 - dmch)ZrX₂分子具有一个基于戊二烯基的稳定性明显较低的最高占据分子轨道(HOMO)和一个基本不变的基于金属的最低未占据分子轨道(LUMO)。此外,戊二烯基的最低未占据轨道相对于环戊二烯基得到稳定,并且成为一个更好的潜在δ电子受体,从而导致低价态和高价态金属配合物在结构和反应性上存在差异。