首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >The reduction pathway of end-on coordinated dinitrogen. I. Vibrational spectra of Mo/W-N-2, -NNH, and -NNH2 complexes and quantum chemistry assisted normal coordinate analysis
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The reduction pathway of end-on coordinated dinitrogen. I. Vibrational spectra of Mo/W-N-2, -NNH, and -NNH2 complexes and quantum chemistry assisted normal coordinate analysis

机译:端基配位二氮的还原途径。 I.Mo/W-N-2、-NNH和-NNH2配合物的振动光谱和量子化学辅助的正态坐标分析

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Infrared and Raman spectra of [M(N-2)(2)(dppe)(2)] (M = W, Mo) and the two protonated derivatives [WF(NNH)(dppe)(2)] and [WF(NNH2)(dppe)(2)](+) (dppe = 1,2-bis (diphenylphosphino)ethane) are presented. Using isotope substituted compounds (N-15 and D) the vibrations of the Y-M-N2Hx (x = 0, 1, 2; Y = N-2, F) central unit are identified, in particular the M-N and N-N stretching modes. In case of the monoprotonated systems, an equilibrium between metal- and nitrogen-protonated species exists that is clearly detectable in the IR spectra. Making use of theoretical force fields, a quantum chemistry assisted normal coordinate analysis (QCA-NCA) is performed for all three tungsten systems showing very good agreement with experimental frequencies. The resulting force constants for the metal-N and N-N bonds offer quantitative insight into the change of M-N and N-N bond strengths during protonation of dinitrogen bound end-on terminally to transition metals. The salient feature of this "asymmetric" protonation pathway is the strengthening of the metal-N bond going along with each protonation step whereas the N-N bond is weakened at the same time. [References: 55]
机译:[M(N-2)(2)(dppe)(2)](M = W,Mo)以及两个质子化衍生物[WF(NNH)(dppe)(2)]和[WF(介绍了NNH2)(dppe)(2)](+)(dppe = 1,2-双(二苯基膦基)乙烷)。使用同位素取代的化合物(N-15和D)确定Y-M-N2Hx(x = 0、1、2; Y = N-2,F)中心单元的振动,尤其是M-N和N-N拉伸模式。在单质子化系统的情况下,金属质子化和氮质子化的物质之间存在平衡,这在红外光谱中可以明显检测到。利用理论力场,对所有三个钨系统进行了量子化学辅助的正态坐标分析(QCA-NCA),显示出与实验频率非常吻合。金属-N和N-N键的合成力常数提供了定量的洞察力,可了解末端连接的二氮与过渡金属质子化过程中M-N和N-N键强度的变化。该“不对称”质子化途径的显着特征是,随着每个质子化步骤的进行,金属-N键的增强,而N-N键同时被削弱。 [参考:55]

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