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首页> 外文期刊>Organometallics >Structure and Bonding in the Unsaturated Hydride- and Hydrocarbyl-Bridged Complexes [Mo2(eta~5-C5H5)2(mu-X)(mu-PCy2)(CO)2] (X = H, CH3, CH2Ph, Ph). Evidence for the Presence of alpha-Agostic and pi-Bonding Interactions
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Structure and Bonding in the Unsaturated Hydride- and Hydrocarbyl-Bridged Complexes [Mo2(eta~5-C5H5)2(mu-X)(mu-PCy2)(CO)2] (X = H, CH3, CH2Ph, Ph). Evidence for the Presence of alpha-Agostic and pi-Bonding Interactions

机译:不饱和氢化物和烃基桥接配合物[Mo2(eta〜5-C5H5)2(mu-X)(mu-PCy2)(CO)2]的结构和键合(X = H,CH3,CH2Ph,Ph)。存在α-声与π键相互作用的证据

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The reactions of the triply bonded anion [Mo2Cp2(mu-PCy2)(mu-CO)2]~- (Li~+ salt) with [NH4]PF6, MeI, and PhCH2Cl give, with good yields, the corresponding hydride- or alkyl-bridged derivatives [MO2CP2-(mu-X)(mu-PCy2)(CO)2] (X = H, Me, CH2Ph). The related phenyl complex [Mo2Cp2(mu-Ph)(mu-PCy2)(CO)2] can be obtained upon reaction of the above anion with Ph3PbCl. According to the corresponding X-ray diffraction studies, the latter complex displays its phenyl group bonded to the dimetal center exclusively through the ipso carbon atom, while the methyl and benzyl complexes adopt an asymmetric alpha-agostic structure whereby one of the C-H bonds of the bridgehead carbon is bound to one of the molybdenum atoms. The intermetallic distances remain quite short in all cases, 2.56-2.58 A. In solution, the hydride complex exhibits dynamic behavior involving mutual exchange of the carbonyl ligands. The alkyl derivatives behave similarly to each other in solution and also exhibit dynamic behavior, possibly implying the presence of small amounts of a nonagostic structure in equilibrium with the dominant a-agostic structure. Density functional theory calculations (B3LYP, B3PW91) correctly reproduce the experimental structures, and predict an a-agostic structure for both the methyl and benzyl complexes. The bonding in the above hydride and hydrocarbyl complexes was analyzed using molecular orbital, atoms in molecules, and natural bond orbital methodologies. The intermetallic binding in the hydride complex can be thus described as composed of a tricentric (Mo2H) plus two bicentric (Mo2) interactions, the latter being of sigma and pi types. In the hydrocarbyl-bridged complexes, analogous tricentric (MO2C, and bicentric (Mo2) interactions can be identified, but there are additional interactions reducing the strength of the intermetallic binding, these being the alpha-agostic bonding in the case of the alkyl complexes and a pi-donor interaction from the pi-bonding orbitals of the hydrocarbon ring into suitable metal acceptor orbitals, in the case of the phenyl complex. The strength of these additional interactions have been estimated by second-order perturbation analysis to be of 70.3 (Me), 89.2 (CH2Ph), and 52.2 (Ph) kJ mol~(-1), respectively.
机译:三键结合的阴离子[Mo2Cp2(mu-PCy2)(mu-CO)2]-(Li +盐)与[NH4] PF6,MeI和PhCH2Cl的反应可产生相应的氢化物或烷基桥接衍生物[MO2CP2-(mu-X)(mu-PCy2)(CO)2](X = H,Me,CH2Ph)。当上述阴离子与Ph3PbCl反应时,可获得相关的苯基络合物[Mo2Cp2(mu-Ph)(mu-PCy2)(CO)2]。根据相应的X射线衍射研究,后者的配合物显示其苯基仅通过ipso碳原子键合至双金属中心,而甲基和苄基配合物采用不对称的α-声波结构,因此,其中的CH键之一桥头碳键合至一个钼原子。在所有情况下,金属间距离都非常短,为2.56-2.58A。在溶液中,氢化物配合物表现出涉及羰基配体相互交换的动力学行为。烷基衍生物在溶液中的行为彼此相似,并且还表现出动力学行为,这可能暗示着与非α-显性结构处于平衡状态的少量非非结构存在。密度泛函理论计算(B3LYP,B3PW91)正确地再现了实验结构,并预测了甲基和苄基配合物的α-声结构。使用分子轨道,分子中的原子和自然键轨道方法对上述氢化物和烃基配合物中的键进行了分析。因此,氢化物络合物中的金属间结合可以描述为由三中心(Mo2H)加两个双中心(Mo2)相互作用组成,后者为sigma和pi型。在烃基桥连的配合物中,可以识别出类似的三中心(MO2C)和双中心(Mo2)相互作用,但是还有其他相互作用降低了金属间结合的强度,在烷基配合物的情况下为α-声级键。在苯配合物的情况下,从烃环的π键轨道到合适的金属受体轨道的π供体相互作用。这些附加相互作用的强度通过二阶扰动分析估计为70.3(Me ),89.2(CH2Ph)和52.2(Ph)kJ mol〜(-1)。

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