Fir Barbara, Whalen J Marc, Mercier Hélène P A, Dixon David A, Schrobilgen Gary J
Department of Chemistry, McMaster University, Hamilton, Ontario L8S 4M1, Canada.
Inorg Chem. 2006 Mar 6;45(5):1978-96. doi: 10.1021/ic051451t.
The salt, [F5TeN(H)Xe][AsF6], has been synthesized in the natural abundance and 99.5% 15N-enriched forms. The F5TeN(H)Xe+ cation has been obtained as the product of the reactions of [F5TeNH3][AsF6] with XeF2 (HF and BrF5 solvents) and F5TeNH2 with [XeF][AsF6] (HF solvent) and characterized in solution by 129Xe, 19F, 125Te, 1H, and 15N NMR spectroscopy at -60 to -30 degrees C. The orange [F5TeN(H)Xe][AsF6] and colorless [F5TeNH3][AsF6] salts were crystallized as a mixture from HF solvent at -35 degrees C and were characterized by Raman spectroscopy at -165 degrees C and by X-ray crystallography. The crystal structure of the low-temperature phase, alpha-F5TeNH2, was obtained by crystallization from liquid SO2 between -50 and -70 degrees C and is fully ordered. The high-temperature phase, beta-F5TeNH2, was obtained by sublimation at room temperature and exhibits a 6-fold disorder. Decomposition of [F5TeN(H)Xe][AsF6] in the solid state was rapid above -30 degrees C. The decomposition of F5TeN(H)Xe+ in HF and BrF5 solution at -33 degrees C proceeded by fluorination at nitrogen to give F5TeNF2 and Xe gas. Electronic structure calculations at the Hartree-Fock and local density-functional theory levels were used to calculate the gas-phase geometries, charges, Mayer bond orders, and Mayer valencies of F5TeNH2, F5TeNH3+, F5TeN(H)Xe+, [F5TeN(H)Xe][AsF6], F5TeNF2, and F5TeN2- and to assign their experimental vibrational frequencies. The F5TeN(H)Xe+ and the ion pair, [F5TeN(H)Xe][AsF6], systems were also calculated at the MP2 and gradient-corrected (B3LYP) levels.
盐[F5TeN(H)Xe][AsF6]已通过天然丰度形式和99.5% 15N富集形式合成。F5TeN(H)Xe+阳离子是[F5TeNH3][AsF6]与XeF2(HF和BrF5溶剂)以及F5TeNH2与[XeF][AsF6](HF溶剂)反应的产物,并在-60至-30摄氏度下通过129Xe、19F、125Te、1H和15N核磁共振光谱在溶液中进行了表征。橙色的[F5TeN(H)Xe][AsF6]和无色的[F5TeNH3][AsF6]盐在-35摄氏度下从HF溶剂中结晶为混合物,并在-165摄氏度下通过拉曼光谱和X射线晶体学进行了表征。低温相α-F5TeNH2的晶体结构是通过在-50至-70摄氏度之间从液态SO2中结晶获得的,并且是完全有序的。高温相β-F5TeNH2是通过在室温下升华获得的,并且表现出六重无序。[F5TeN(H)Xe][AsF6]在固态下于-30摄氏度以上迅速分解。F5TeN(H)Xe+在-33摄氏度下于HF和BrF5溶液中的分解通过氮上的氟化反应进行,生成F5TeNF2和Xe气体。在哈特里-福克和局域密度泛函理论水平上进行的电子结构计算用于计算F5TeNH2、F5TeNH3+、F5TeN(H)Xe+、[F5TeN(H)Xe][AsF6]、F5TeNF2和F5TeN2-的气相几何结构、电荷、迈耶键级和迈耶化合价,并指定它们的实验振动频率。F5TeN(H)Xe+和离子对[F5TeN(H)Xe][AsF6]体系也在MP2和梯度校正(B3LYP)水平上进行了计算。