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从簇合物到离子络合物:结构表征的铊钛双醇盐

From clusters to ionic complexes: structurally characterized thallium titanium double alkoxides.

作者信息

Boyle Timothy J, Zechmann Cecilia A, Alam Todd M, Rodriguez Mark A, Hijar Cybele A, Scott Brian L

机构信息

Advanced Materials Laboratory, Sandia National Laboratories, Albequerque, New Mexico 87106, USA.

出版信息

Inorg Chem. 2002 Feb 25;41(4):946-57. doi: 10.1021/ic0110833.

Abstract

A series of sterically varied titanium alkoxides [Ti(OR)(4)(), n = 4, OR = OCH(2)CH(3) (OEt); n = 1, OCH(CH(3))(2) (OPr(i)); n = 2, OCH(2)C(CH(3))(3) (ONep); n = 1, OC(6)H(3)(CH(3))(2)-2,6 (DMP)] were reacted with a series of thallium alkoxides [Tl(OR) (x = 4, OR = OEt, ONep; n = infinity, DMP)]. The resultant products of the Tl(mu(3)-OEt)-modified Ti(OR)(4)() (OR = OEt, OPr(i), ONep) were found by X-ray analysis to be Tl(4)Ti(2)(mu-O)(mu(3)-OEt)(8)(OEt)(2) (1), Tl(4)Ti(2)(mu-O)(mu(3)-OPr(i))(5)(mu(3)-OEt)(3)(OEt)(2) (2), and TlTi(2)(mu(3)-OEt)(2)(mu-OEt)(mu-ONep)(2)(ONep)(4) (3), respectively. The reaction of Tl(mu(3)-OEt), 12HOEt, and 4Ti(mu-ONep)ONep)(3) to generate 3 in a higher yield resulted in the isolation of TlTi(2)(mu(3)-OEt)(mu(3)-ONep)(mu-OEt)(mu-ONep)(2)(ONep)(4) (4). Compounds 1 and 2 possess an octahedral (Oh) arrangement of two Ti and four Tl metal atoms around a mu-O central oxide atom (the Tl-O distance is too long to be considered a bond). For both compounds, each Ti atom adopts a distorted Oh geometry with one terminal OEt ligand. The Tl atoms are formally 4-coordinated, adopting a distorted pyramidal geometry using four mu(3)-OR (OR = OEt or OPr(i)) ligands to complete their coordination sphere. The Tl atoms reside approximately 1.4 A below the basal plane of oxygens. In contrast to these structures, both 3 and 4 utilize ONep ligands and display reduced oligomerization yielding trinuclear complexes without oxo formation. The two Ti cations are Oh, and the single Tl cation is in a formal distorted pyramidal (PYD) arrangement. If the lone pair of the Tl cations are considered in the geometry, each Tl adopts a square base pyramidal geometry. Two terminal ONep ligands are bound to each Ti with the remainder of the molecule consisting of mu(3)- and mu-ONep ligands. The reaction of Tl(mu(3)-ONep) with two equivalents of Ti(mu-ONep)(ONep)(3) also led to the isolation of the homoleptic trinuclear complex TlTi(2)(mu(3)-ONep)(2)(mu-ONep)(3)(ONep)(4) (5) which is analogous in structure to the mixed ligand species of 3 and 4. Each Ti is Oh coordinated with six ONep ligands, and the single Tl is PYD bound by ONep ligands. A further increase in the steric bulk of the pendant ligands, using Tl(mu-DMP) and Ti(mu-ONep)(ONep)(3), resulted in a further decrease in the nuclearity yielding the dinuclear species TlTi(mu-DMP)(mu-ONep)(DMP)(ONep)(2) (6). For 6, the two metals are bound by a mu-ONep and a mu-DMP ligand. The Tl metal center was solved in a bent geometry while the Ti adopted a distorted trigonal bipyramidal (TBP) geometry using three ONep and two DMP ligands to fill its coordination sphere. Further increasing the steric bulk of the ancillary ligands using Ti(DMP)(4) and Tl(mu-DMP) led to the formation of [Tl(+)][(-)(eta(2-3)-DMP)Ti(DMP)(4)] (7). The Ti metal center is in a TBP geometry, and the "naked" Tl cation resides unencumbered by solvent molecules but was found to have a strong pi-interaction with four DMP ligands of neighboring Ti(DMP)(5)(-) anions. For this novel set of compounds, (205)Tl NMR spectroscopy was used to investigate the solution behavior of these compounds. Multiple (205)Tl resonances were observed for the solution spectra of the crystalline material of 1-6, and a broad singlet was observed for 7. The large number of minor resonances noted for these compounds was attributed to sensitivity of the Tl cation based on small variations due to ligand rearrangement. However, the major resonance noted in the (205)Tl NMR solution spectra of 1-7 are in agreement with their respective solid-state structures.

摘要

将一系列空间位阻不同的钛醇盐[Ti(OR)(4),n = 4,OR = OCH(2)CH(3) (OEt);n = 1,OCH(CH(3))(2) (OPr(i));n = 2,OCH(2)C(CH(3))(3) (ONep);n = 1,OC(6)H(3)(CH(3))(2)-2,6 (DMP)]与一系列铊醇盐[Tl(OR) (x = 4,OR = OEt,ONep;n = ∞,DMP)]进行反应。通过X射线分析发现,Tl(mu(3)-OEt)修饰的Ti(OR)(4)(OR = OEt、OPr(i)、ONep)的产物分别为Tl(4)Ti(2)(mu - O)(mu(3)-OEt)(8)(OEt)(2) (1)、Tl(4)Ti(2)(mu - O)(mu(3)-OPr(i))(5)(mu(3)-OEt)(3)(OEt)(2) (2)和TlTi(2)(mu(3)-OEt)(2)(mu - OEt)(mu - ONep)(2)(ONep)(4) (3)。Tl(mu(3)-OEt)、12HOEt和4Ti(mu - ONep)ONep)(3)反应以更高产率生成3,同时分离出TlTi(2)(mu(3)-OEt)(mu(3)-ONep)(mu - OEt)(mu - ONep)(2)(ONep)(4) (4)。化合物1和2在一个mu - O中心氧化物原子周围具有两个Ti和四个Tl金属原子的八面体(Oh)排列(Tl - O距离太长,不能视为化学键)。对于这两种化合物,每个Ti原子采用带有一个末端OEt配体的扭曲Oh几何构型。Tl原子形式上为4配位,采用扭曲的金字塔形几何构型,使用四个mu(3)-OR(OR = OEt或OPr(i))配体来完成其配位球。Tl原子位于氧基面下方约1.4 Å处。与这些结构不同,3和4都使用ONep配体,并且显示出低聚程度降低,生成没有氧形成的三核配合物。两个Ti阳离子为Oh构型,单个Tl阳离子处于形式上扭曲的金字塔形(PYD)排列。如果在几何构型中考虑Tl阳离子的孤对电子,则每个Tl采用方底金字塔形几何构型。两个末端ONep配体与每个Ti结合,分子的其余部分由mu(3)-和mu - ONep配体组成。Tl(mu(3)-ONep)与两当量的Ti(mu - ONep)(ONep)(3)反应也导致分离出同配三核配合物TlTi(2)(mu(3)-ONep)(2)(mu - ONep)(3)(ONep)(4) (5),其结构与3和4的混合配体物种类似。每个Ti由六个ONep配体Oh配位,单个Tl由ONep配体PYD配位。使用Tl(mu - DMP)Ti(mu - ONep)(ONep)(3)进一步增加侧链配体的空间位阻,导致核数进一步减少,生成双核物种TlTi(mu - DMP)(mu - ONep)(DMP)(ONep)(2) (6)。对于6,两种金属由一个mu - ONep和一个mu - DMP配体结合。Tl金属中心以弯曲几何构型解析,而Ti采用扭曲的三角双锥(TBP)几何构型,使用三个ONep和两个DMP配体来填充其配位球。使用Ti(DMP)(4)和Tl(mu - DMP)进一步增加辅助配体的空间位阻导致形成[Tl(+)][(-)(eta(2 - 3)-DMP)Ti(DMP)(4)] (7)。Ti金属中心处于TBP几何构型,“裸露”的Tl阳离子不受溶剂分子阻碍,但发现与相邻Ti(DMP)(5)(-)阴离子的四个DMP配体有强烈的π相互作用。对于这组新型化合物,使用(205)Tl NMR光谱研究这些化合物的溶液行为。在1 - 6晶体材料的溶液光谱中观察到多个(205)Tl共振,对于7观察到一个宽单峰。这些化合物中大量的小共振归因于Tl阳离子基于配体重排引起的小变化的敏感性。然而,在1 - 7的(205)Tl NMR溶液光谱中观察到的主要共振与其各自的固态结构一致。

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