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钛二聚体与双原子配体反应的霓虹矩阵光谱学和理论研究:与氮气和一氧化碳反应的比较。

Neon-matrix spectroscopic and theoretical studies of the reactivity of titanium dimer with diatomic ligands: comparison of reactions with nitrogen and carbon monoxide.

机构信息

Laboratoire de Dynamique, Interactions et Réactivité, UMR 7075 CNRS/UPMC, Université P. et M. Curie, Case courrier 49, bâtiment F74, 4 place Jussieu, 75252 Paris Cedex 05, France.

出版信息

Phys Chem Chem Phys. 2009 Nov 14;11(42):9831-9. doi: 10.1039/b910056c. Epub 2009 Aug 27.

Abstract

The reactivity of diatomic titanium with molecular carbon monoxide has been investigated in solid neon at very low temperature. In contrast to the spontaneous reaction observed between Ti(2) and N(2), our results show that the formation of dititanium oxycarbide (OTi(2)C) from the condensation of effusive beams of Ti and CO in neon matrices involves several intermediate steps including one metastable intermediate. In the absence of electronic excitation, only formation of a Ti(2)(CO) complex occurs spontaneously during the reaction at 9 K of ground state Ti(2) and CO, as reported in solid argon by Xu, Jiang and Tsumori (Angew. Chem. Int. Ed., 2005, 44, 4338). However, during deposition or following electronic excitation, this species rearranges into a new species: the more stable, OTi(2)C oxycarbide form. Several low-lying excited states of OTi(2)C are also observed between 0.77 and 0.89 eV above the ground state, leading to a complex sequence of interacting vibronic transitions, merging into a broad continuum above 1 eV. Observations of Ti(2)(12)C(16)O, Ti(2)(13)C(16)O and Ti(2)(12)C(18)O and natural titanium isotopic data enable the identification of four fundamental vibrations in the ground electronic state and two others in the first two excited states. Quantum chemical calculations predict an open-shell (1)A(g) ground state with Ti-C and Ti-O distances close to 184 pm, and 91 degrees for the TiCTi and TiOTi bond angles, and give fundamental frequencies in good agreement with observation. The reaction paths of the Ti(2) + N(2) --> Ti(2)N(2) and Ti(2) + CO --> Ti(2)(CO) --> OTi(2)C have been investigated and a reaction scheme is proposed accounting for the similarities in nature and properties of the final products, as well as explaining the observation of a coordination complex with Ti(2) only in the case of the carbonyl ligand.

摘要

二价钛与一氧化碳分子在低温下的反应已在固态氖中进行了研究。与 Ti(2) 和 N(2) 之间自发反应相反,我们的结果表明,由 Ti 和 CO 在氖基质中effusive 射束的缩合形成二钛氧碳化物(OTi(2)C)涉及几个中间步骤,包括一个亚稳态中间产物。在没有电子激发的情况下,只有在 9 K 下,处于基态的 Ti(2) 和 CO 之间的反应自发地形成 Ti(2)(CO) 配合物,正如 Xu、Jiang 和 Tsumori 在固态氩中报道的那样(Angew. Chem. Int. Ed.,2005,44,4338)。然而,在沉积或电子激发后,这种物质会重新排列成一种新的物质:更稳定的 OTi(2)C 氧碳化物形式。在基态以上 0.77 到 0.89 eV 之间也观察到 OTi(2)C 的几个低能激发态,导致一系列相互作用的振动态序,在 1 eV 以上合并为一个宽连续谱。Ti(2)(12)C(16)O、Ti(2)(13)C(16)O 和 Ti(2)(12)C(18)O 的观察和天然钛同位素数据使我们能够识别出基态电子态中的四个基本振动,以及前两个激发态中的另外两个。量子化学计算预测具有接近 184 pm 的 Ti-C 和 Ti-O 距离的开壳(1)A(g) 基态,以及 91 度的 TiCTi 和 TiOTi 键角,并给出与观察结果非常吻合的基本频率。Ti(2) + N(2) --> Ti(2)N(2) 和 Ti(2) + CO --> Ti(2)(CO) --> OTi(2)C 的反应路径已经被研究,提出了一个反应方案,该方案解释了最终产物的性质和性质的相似性,以及解释了仅在羰基配体的情况下观察到的具有 Ti(2) 的配位配合物的原因。

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