Studt Felix, MacKay Bruce A, Fryzuk Michael D, Tuczek Felix
Institut für Anorganische Chemie, Christian Albrechts Universität Kiel, Ohlshausenstrasse 40, 24098 Kiel, Germany.
J Am Chem Soc. 2004 Jan 14;126(1):280-90. doi: 10.1021/ja036997y.
The vibrational properties and the electronic structure of the side-on end-on N(2)-bridged Ta complex ([NPN]Ta(micro-H))(2)(micro-eta(1):eta(2)-N(2)) (1) (where [NPN] = (PhNSiMe(2)CH(2))(2)PPh) are analyzed. Vibrational characterization of the Ta(2)(micro-N(2))(micro-H)(2) core is based on resonance Raman and infrared spectroscopies evaluated with a novel quantum chemistry-based normal coordinate analysis (QCB-NCA). The N-N stretching frequency is found at 1165 cm(-)(1) exhibiting a (15)N(2) isotope shift of -37 cm(-)(1). Four other modes of the Ta(2)N(2)H(2) core are observed between 430 and 660 cm(-)(1). Two vibrations of the bridging hydrido ligands are also identified in the spectra. On the basis of experimental frequencies and the QCB-NCA procedure, the N-N force constant is determined to be 2.430 mdyn A(-)(1). The Ta-N force constants are calculated to be 2.517 mdyn A(-)(1) for the Ta-eta(1)-N(2) bond and 1.291 and 0.917 mdyn A(-)(1) for the Ta-eta(2)-N(2) bonds, respectively. DFT calculations on 1 suggest that the bridging dinitrogen ligand carries a charge of -1.1, which is equally distributed over the two nitrogen atoms. However, orbital analysis reveals that the terminal nitrogen makes lower contributions to the pi orbitals and much higher contributions to the pi orbitals of the N(2) ligand than the bridging nitrogen. This suggests that reactions of the dinitrogen ligand with electrophiles should preferentially occur at the terminal N atom, in agreement with experimental results.
对侧面 - 端基N₂桥联的钽配合物([NPN]Ta(μ - H))₂(μ - η¹:η² - N₂) (1)(其中[NPN] = (PhNSiMe₂CH₂)₂PPh)的振动性质和电子结构进行了分析。Ta₂(μ - N₂)(μ - H)₂核心的振动表征基于用一种新型的基于量子化学的简正坐标分析(QCB - NCA)评估的共振拉曼光谱和红外光谱。发现N - N伸缩频率为1165 cm⁻¹,表现出 - 37 cm⁻¹的¹⁵N₂同位素位移。在430至660 cm⁻¹之间观察到Ta₂N₂H₂核心的另外四种模式。光谱中还鉴定出桥连氢化物配体的两种振动。基于实验频率和QCB - NCA程序,确定N - N力常数为2.430 mdyn Å⁻¹。计算得出Ta - η¹ - N₂键的Ta - N力常数为2.517 mdyn Å⁻¹,Ta - η² - N₂键的Ta - N力常数分别为1.291和0.917 mdyn Å⁻¹。对1的密度泛函理论计算表明,桥连二氮配体带有 - 1.1的电荷,该电荷在两个氮原子上均匀分布。然而,轨道分析表明,末端氮对π轨道的贡献比桥连氮对N₂配体的π轨道的贡献小得多,对π*轨道的贡献则高得多。这表明二氮配体与亲电试剂的反应应优先发生在末端N原子上,与实验结果一致。