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首页> 外文期刊>Organometallics >Bonding in Complexes of Bis(pentalene)dititanium, Ti-2(C8H6)(2)
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Bonding in Complexes of Bis(pentalene)dititanium, Ti-2(C8H6)(2)

机译:bonding in complexes of BIS(喷他了呢)第titanium, TI-2(C8H6)(2)

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摘要

Bonding in the bis(pentalene)dititanium "double-sandwich" species Ti(2)Pn(2) (Pn = C8H6) and its interaction with other fragments have been investigated by density functional calculations and fragment analysis. Ti(2)Pn(2) with C-2v symmetry has two metal-metal bonds and a low-lying metal-based empty orbital, all three frontier orbitals having a(1) symmetry. The latter may be regarded as being derived by symmetric combinations of the classic three frontier orbitals of two bent bis(cyclopentadienyl) metal fragments. Electro-chemical studies on Ti(2)Pn(2)(dagger) (Pn(dagger) =1,4-{(SiPr3)-Pr-i}(2)C8H4) revealed a one-electron oxidation, and the formally mixed-valence Ti(II)-Ti(III) cationic complex [Ti(2)Pn(2)(dagger)] [B(C6F5)(4)] has been structurally characterized. Theory indicates an S = 1/2 ground-state electronic configuration for the latter, which was confirmed by EPR spectroscopy and SQUID magnetometry. Carbon dioxide binds symmetrically to Ti(2)Pn(2), preserving the C-2v symmetry, as does carbon disulfide. The dominant interaction in Ti(2)Pn(2)CO(2) is sigma donation into the LUMO of bent CO2, and donation from the O atoms to Ti(2)Pn(2) is minimal, whereas in Ti(2)Pn(2)CS(2) there is significant interaction with the S atoms. The bridging O atom in the mono(oxo) species Ti(2)Pn(2)O, however, employs all three O 2p orbitals in binding and competes strongly with Pn, leading to weaker binding of the carbocyclic ligand, and the sulfur analogue Ti(2)Pn(2)S behaves similarly. Ti(2)Pn(2) is also capable of binding one, two, or three molecules of carbon monoxide. The bonding demands of a single CO molecule are incompatible with symmetric binding, and an asymmetric structure is found. The dicarbonyl adduct Ti(2)Pn(2)(CO)(2) has C-5 symmetry with the Ti2Pn2 unit acting as two MCp2 fragments. Synthetic studies showed that in the presence of excess CO the tricarbonyl complex Ti(2)Pn(2)(dagger)(CO)(3) is formed, which optimizes to an asymmetric structure with one semibridging and two terminal CO ligands. Low-temperature C-13 NMR spectroscopy revealed a rapid dynamic exchange between the two bound CO sites and free CO.
机译:已通过密度泛函计算和片段分析研究了双(戊烯)二钛金属“双夹心”物种Ti(2)Pn(2)(Pn = C8H6)的键合及其与其他片段的相互作用。具有C-2v对称性的Ti(2)Pn(2)具有两个金属-金属键和一个低位基于金属的空轨道,所有三个前沿轨道都具有a(1)对称性。后者可以被认为是由两个弯曲的双(环戊二烯基)金属片段的经典三个前沿轨道的对称组合派生的。 Ti(2)Pn(2)(dagger)(Pn(dagger)= 1,4-{(SiPr3)-Pr-i}(2)C8H4)的电化学研究显示单电子氧化混合价Ti(II)-Ti(III)阳离子络合物[Ti(2)Pn(2)(匕首)] [B(C6F5)(4)]的结构已得到表征。理论表明,后者为S = 1/2的基态电子构型,这已通过EPR光谱学和SQUID磁力测定法得到证实。二氧化碳与Ti(2)Pn(2)对称结合,保持C-2v对称性,二硫化碳也一样。 Ti(2)Pn(2)CO(2)中的主要相互作用是向弯曲的CO2的LUMO中的sigma捐赠,从O原子到Ti(2)Pn(2)的捐赠很少,而在Ti(2)中Pn(2)CS(2)与S原子有明显的相互作用。但是,单(氧代)物种Ti(2)Pn(2)O中的桥接O原子使用所有三个O 2p轨道进行结合,并与Pn强烈竞争,从而导致碳环配体和硫类似物的结合较弱Ti(2)Pn(2)S的行为类似。 Ti(2)Pn(2)还能够结合一,二或三个一氧化碳分子。单个CO分子的键合要求与对称键合不兼容,并且发现了不对称结构。二羰基加合物Ti(2)Pn(2)(CO)(2)具有C-5对称性,其中Ti2Pn2单元充当两个MCp2片段。合成研究表明,在存在过量CO的情况下,会形成三羰基配合物Ti(2)Pn(2)(dagger)(CO)(3),该配合物优化为具有一个半桥和两个末端CO配体的不对称结构。低温C-13 NMR光谱显示两个结合的CO位点和游离CO之间快速动态交换。

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