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[F3S(三键)NXeF][AsF6]的合成以及通过多核磁共振和拉曼光谱、电子结构计算和X射线晶体学进行的结构研究。

Synthesis of [F3S(triple bond)NXeF][AsF6] and structural study by multi-NMR and Raman spectroscopy, electronic structure calculations, and X-ray crystallography.

作者信息

Smith Gregory L, Mercier Hélène P A, Schrobilgen Gary J

机构信息

Department of Chemistry, McMaster University, Hamilton, Ontario L8S 4M1, Canada.

出版信息

Inorg Chem. 2007 Feb 19;46(4):1369-78. doi: 10.1021/ic061899+. Epub 2007 Jan 26.

Abstract

The salt, [F3S(triple bond)NXeF][AsF6], has been synthesized by the reaction of [XeF][AsF6] with liquid N(triple bond)SF3 at -20 degrees C. The Xe-N bonded cation provides a rare example of xenon bound to an inorganic nitrogen base in which nitrogen is formally sp-hybridized. The F3S(triple bond)NXeF+ cation was characterized by Raman spectroscopy at -150 degrees C and by 129Xe, 19F, and 14N NMR spectroscopy in HF solution at -20 degrees C and in BrF5 solution at -60 degrees C. Colorless [F3S(triple bond)NXeF][AsF6] was crystallized from HF solvent at -45 degrees C, and its low-temperature X-ray crystal structure was determined. The Xe-N bond is among the longest Xe-N bonds known (2.236(4) A), whereas the Xe-F bond length (1.938(3) A) is significantly shorter than that of XeF2 but longer than in XeF+ salts. The Xe-F and Xe-N bond lengths are similar to those of HC(triple bond)NXeF+, placing it among the most ionic Xe-N bonds known. The nonlinear Xe-N-S angle (142.6(3)o) contrasts with the linear angle predicted by electronic structure calculations and is attributed to close N...F contacts within the crystallographic unit cell. Electronic structure calculations at the MP2 and DFT levels of theory were used to calculate the gas-phase geometries, charges, bond orders, and valencies of F3S(triple bond)NXeF+ and to assign vibrational frequencies. The calculated small energy difference (7.9 kJ mol-1) between bent and linear Xe-N-S angles also indicates that the bent geometry is likely the result of crystal packing. The structural studies, natural bond orbital analyses, and calculated gas-phase dissociation enthalpies reveal that F3S(triple bond)NXeF+ is among the weakest donor-acceptor adducts of XeF+ with an Xe-N donor-acceptor interaction that is very similar to that of HC(triple bond)NXeF+, but considerably stronger than that of F3S(triple bond)NAsF5. Despite the low dissociation enthalpy of the donor-acceptor bond in F3S(triple bond)NXeF+, 129Xe, 19F, and 14N NMR studies reveal that the F3S(triple bond)NXeF+ cation is nonlabile at low temperatures in HF and BrF5 solvents.

摘要

盐[F3S(三键)NXeF][AsF6]是通过[XeF][AsF6]与液态N(三键)SF3在-20℃下反应合成的。Xe-N键合阳离子提供了一个罕见的例子,即氙与无机氮碱结合,其中氮形式上是sp杂化的。F3S(三键)NXeF+阳离子通过在-150℃下的拉曼光谱以及在-20℃的HF溶液和-60℃的BrF5溶液中的129Xe、19F和14N核磁共振光谱进行了表征。无色的[F3S(三键)NXeF][AsF6]在-45℃下从HF溶剂中结晶出来,并测定了其低温X射线晶体结构。Xe-N键是已知最长的Xe-N键之一(2.236(4) Å),而Xe-F键长(1.938(3) Å)明显短于XeF2,但长于XeF+盐中的键长。Xe-F和Xe-N键长与HC(三键)NXeF+的键长相似,使其处于已知的最具离子性的Xe-N键之中。非线性的Xe-N-S角(142.6(3)°)与电子结构计算预测的线性角形成对比,这归因于晶体学晶胞内紧密的N...F接触。在MP2和DFT理论水平上进行的电子结构计算用于计算F3S(三键)NXeF+的气相几何结构、电荷、键级和价态,并归属振动频率。计算得出的弯曲和线性Xe-N-S角之间的小能量差(7.9 kJ mol-1)也表明弯曲几何结构可能是晶体堆积的结果。结构研究、自然键轨道分析以及计算得出的气相解离焓表明,F3S(三键)NXeF+是XeF+最弱的供体-受体加合物之一,其Xe-N供体-受体相互作用与HC(三键)NXeF+非常相似,但比F3S(三键)NAsF5的相互作用强得多。尽管F3S(三键)NXeF+中供体-受体键的解离焓较低,但129Xe、19F和14N核磁共振研究表明,F3S(三键)NXeF+阳离子在HF和BrF5溶剂中低温下不稳定。

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