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侧端-端双氮桥联配合物[{(NPN)Ta}2(μ-H)2(μ-η1:η2-N2)]与AlMe3、GaMe3和B(C6F5)3形成的路易斯加合物:合成、结构及光谱性质

Lewis adducts of the side-on end-on dinitrogen-bridged complex [{(NPN)Ta}2(mu-H)2(mu-eta 1:eta 2-N2)] with AlMe3, GaMe3, and B(C6F5)3: synthesis, structure, and spectroscopic properties.

作者信息

Studt Felix, MacKay Bruce A, Johnson Samuel A, Patrick Brian O, Fryzuk Michael D, Tuczek Felix

机构信息

Institut für Anorganische Chemie, Christian Albrechts Universität Kiel, Ohlshausenstr. 40, 24098 Kiel, Germany.

出版信息

Chemistry. 2005 Jan 7;11(2):604-18. doi: 10.1002/chem.200400641.

Abstract

Reaction of the side-on end-on dinitrogen complex [{(NPN)Ta}(2)(mu-H)(2)(mu-eta(1):eta(2)-N(2))] (1; in which NPN=(PhNSiMe(2)CH(2))(2)PPh), with the Lewis acids XR(3) results in the adducts [{(NPN)Ta}(2)(mu-H)(2)(mu-eta(1):eta(2)-NNXR(3))], XR(3)=GaMe(3) (2), AlMe(3) (3), and B(C(6)F(5))(3) (4). The solid-state molecular structures of 2, 3, and 4 demonstrate that the N-N bond length increases relative to those found in 1 by 0.036, 0.043, and 0.073 A, respectively. In solution complexes 2-4 are fluxional as evidenced by variable-temperature (1)H NMR spectroscopy. The (15)N{(1)H} NMR spectra of 2-4 are reported; furthermore, their vibrational properties and electronic structures are evaluated. The vibrational structures are found to be closely related to that of the parent complex 1. Detailed spectroscopic analysis on 2-4 leads to the identification of the theoretically expected six normal modes of the Ta(2)N(2) core. On the basis of experimental frequencies and the QCB-NCA procedure, the force constants are determined. Importantly, the N-N force constant decreases from 2.430 mdyn A(-1) in 1 to 1.876 (2), 1.729 (3), and 1.515 mdyn A(-1) (4), in line with the sequence of N-N bond lengths determined crystallographically. DFT calculations on a generic model of the Lewis acid adducts 2-4 reveal that the major donor interaction between the terminal nitrogen atom and the Lewis acid is mediated by a sigma/pi hybrid molecular orbital of N(2), corresponding to a sigma bond. Charge analysis performed for the adducts indicates that the negative charge on the terminal nitrogen atom of the dinitrogen ligand increases with respect to 1. The lengthening of the N-N bond observed for the Lewis adducts is therefore explained by the fact that charge donation from the complex fragment into the pi* orbitals of dinitrogen is increased, while electron density from the N-N bonding orbitals p(sigma) and pi(h) is withdrawn due to the sigma interaction with the Lewis acid.

摘要

侧端-端联二氮配合物[{(NPN)Ta}(2)(μ-H)(2)(μ-η(1):η(2)-N(2))](1;其中NPN = (PhNSiMe(2)CH(2))(2)PPh)与路易斯酸XR(3)反应生成加合物[{(NPN)Ta}(2)(μ-H)(2)(μ-η(1):η(2)-NNXR(3))],XR(3) = GaMe(3)(2)、AlMe(3)(3)和B(C(6)F(5))(3)(4)。2、3和4的固态分子结构表明,相对于1中发现的N-N键长,分别增加了0.036、0.043和0.073 Å。在溶液中,配合物2 - 4是流动的,变温(1)H NMR光谱证明了这一点。报道了2 - 4的(15)N{(1)H} NMR光谱;此外,还评估了它们的振动性质和电子结构。发现振动结构与母体配合物1的振动结构密切相关。对2 - 4进行的详细光谱分析导致识别出Ta(2)N(2)核理论上预期的六个简正模式。根据实验频率和QCB - NCA程序,确定了力常数。重要的是,N - N力常数从1中的2.430 mdyn Å(-1)降至2中的1.876、3中的1.729和4中的1.515 mdyn Å(-1),这与晶体学测定的N - N键长顺序一致。对路易斯酸加合物2 - 4的通用模型进行的DFT计算表明,末端氮原子与路易斯酸之间的主要供体相互作用由N(2)的一个σ/π杂化分子轨道介导,对应于一个σ键。对加合物进行的电荷分析表明,二氮配体末端氮原子上的负电荷相对于1增加。因此,路易斯加合物中观察到的N - N键的延长可以解释为配合物片段向二氮的π*轨道的电荷捐赠增加,而由于与路易斯酸的σ相互作用,N - N成键轨道p(σ)和π(h)的电子密度被撤回。

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