Wijeratne Gayan B, Zolnhofer Eva M, Fortier Skye, Grant Lauren N, Carroll Patrick J, Chen Chun-Hsing, Meyer Karsten, Krzystek J, Ozarowski Andrew, Jackson Timothy A, Mindiola Daniel J, Telser Joshua
Department of Chemistry, University of Kansas , Lawrence, Kansas 66045, United States.
Inorganic Chemistry, Department of Chemistry and Pharmacy, Friedrich-Alexander University Erlangen-Nürnberg , 91058 Erlangen, Germany.
Inorg Chem. 2015 Nov 2;54(21):10380-97. doi: 10.1021/acs.inorgchem.5b01796. Epub 2015 Oct 9.
A facile and high-yielding protocol to the known Ti(II) complex trans-[(py)4TiCl2] (py = pyridine) has been developed. Its electronic structure has been probed experimentally using magnetic susceptibility, magnetic circular dichroism, and high-frequency and high-field electron paramagnetic resonance spectroscopies in conjunction with ligand-field theory and computational methods (density functional theory and ab initio methods). These studies demonstrated that trans-[(py)4TiCl2] has a (3)Eg ground state (dxy(1)dxz,yz(1) orbital occupancy), which, as a result of spin–orbit coupling, yields a ground-state spinor doublet that is EPR active, a first excited-state doublet at ∼60 cm(–1), and two next excited states at ∼120 cm(–1). Reactivity studies with various unsaturated substrates are also presented in this study, which show that the Ti(II) center allows oxidative addition likely via formation of [Ti(η(2)-R2E2)Cl2(py)n] E = C, N intermediates. A new Ti(IV) compound, mer-[(py)3(η(2)-Ph2C2)TiCl2], was prepared by reaction with Ph2C2, along with the previously reported complex trans-(py)3Ti═NPh(Cl)2, from reaction with Ph2N2. Reaction with Ph2CN2 also yielded a new dinuclear Ti(IV) complex, [(py)2(Cl)2Ti(μ2:η(2)-N2CPh2)2Ti(Cl)2], in which the two Ti(IV) ions are inequivalently coordinated. Reaction with cyclooctatetraene (COT) yielded a new Ti(III) complex, [(py)2Ti(η(8)-COT)Cl], which is a rare example of a mononuclear “piano-stool” titanium complex. The complex trans-[(py)4TiCl2] has thus been shown to be synthetically accessible, have an interesting electronic structure, and be reactive toward oxidation chemistry.
已开发出一种简便且高产率的方法来制备已知的二价钛配合物反式-[(吡啶)₄TiCl₂](py = 吡啶)。利用磁化率、磁圆二色性以及高频和高场电子顺磁共振光谱,并结合配体场理论和计算方法(密度泛函理论和从头算方法)对其电子结构进行了实验探测。这些研究表明,反式-[(吡啶)₄TiCl₂]具有³Eg基态(dxy¹dxz,yz¹轨道占据情况),由于自旋-轨道耦合,产生了一个基态自旋双重态,该双重态具有电子顺磁共振活性,在约60 cm⁻¹处有一个第一激发态双重态,在约120 cm⁻¹处有两个次激发态。本研究还展示了与各种不饱和底物的反应性研究,结果表明二价钛中心可能通过形成[Ti(η²-R₂E₂)Cl₂(py)ₙ](E = C、N)中间体实现氧化加成。通过与Ph₂C₂反应制备了一种新的四价钛化合物,面式-[(吡啶)₃(η²-Ph₂C₂)TiCl₂],以及通过与Ph₂N₂反应得到先前报道的配合物反式-(吡啶)₃Ti═NPh(Cl)₂。与Ph₂CN₂反应还生成了一种新的双核四价钛配合物,[(吡啶)₂(Cl)₂Ti(μ₂:η²-N₂CPh₂)₂Ti(Cl)₂],其中两个四价钛离子的配位情况不等价。与环辛四烯(COT)反应生成了一种新的三价钛配合物,[(吡啶)₂Ti(η⁸-COT)Cl],这是单核“钢琴凳”钛配合物的一个罕见例子。因此,已证明反式-[(吡啶)₄TiCl₂]在合成上是可实现的,具有有趣的电子结构,并且对氧化化学具有反应活性。