Bittner Dror M, Zaleski Daniel P, Stephens Susanna L, Tew David P, Walker Nicholas R, Legon Anthony C
School of Chemistry, Newcastle University, Bedson Building, Newcastle upon Tyne, Tyne and Wear NE1 7RU, United Kingdom.
School of Chemistry, University of Bristol, Bristol BS8 1TS, United Kingdom.
J Chem Phys. 2015 Apr 14;142(14):144302. doi: 10.1063/1.4916391.
The H3N⋯CuCl monomer has been generated and isolated in the gas phase through laser vaporisation of a copper sample in the presence of low concentrations of NH3 and CCl4 in argon. The resulting complex cools to a rotational temperature approaching 2 K during supersonic expansion of the gas sample and is characterised by broadband rotational spectroscopy between 7 and 18.5 GHz. The spectra of six isotopologues are measured and analysed to determine rotational, B0; centrifugal distortion, DJ, DJK; and nuclear quadrupole coupling constants of Cu, Cl, and (14)N nuclei, χaa (X). The geometry of the complex is C3v with the N, Cu, and Cl atoms located on the a inertial axis. Bond distances and the ∠(H -N⋯Cu) bond angle within the complex are precisely evaluated through fitting of geometrical parameters to the experimentally determined moments of inertia and through ab initio calculations at the CCSD(T)(F12*)/AVQZ level. The r(Cu -Cl), r(Cu -N), and ∠(H -N⋯Cu) parameters are, respectively, evaluated to be 2.0614(7) Å, 1.9182(13) Å, and 111.40(6)° in the r0 geometry, in good agreement with the ab initio calculations. Geometrical parameters evaluated for the isolated complex are compared with those established crystallographically for a solid-state sample of [Cu(NH3)Cl].
通过在氩气中低浓度的NH₃和CCl₄存在下对铜样品进行激光汽化,已在气相中生成并分离出H₃N⋯CuCl单体。在气体样品的超声速膨胀过程中,生成的配合物冷却至接近2 K的转动温度,并通过7至18.5 GHz的宽带转动光谱进行表征。测量并分析了六种同位素异构体的光谱,以确定转动常数B₀;离心畸变常数Dᴊ、Dᴊᴋ;以及Cu、Cl和¹⁴N核的核四极耦合常数χₐₐ(X)。配合物的几何构型为C₃ᵥ,N、Cu和Cl原子位于a惯性轴上。通过将几何参数拟合到实验测定的转动惯量,并通过CCSD(T)(F12*)/AVQZ水平的从头算计算,精确评估了配合物内的键长和∠(H -N⋯Cu)键角。在r₀几何构型中,r(Cu -Cl)、r(Cu -N)和∠(H -N⋯Cu)参数分别评估为2.0614(7) Å、1.9182(13) Å和111.40(6)°,与从头算计算结果吻合良好。将分离出的配合物的几何参数与[Cu(NH₃)Cl]固态样品晶体学确定的参数进行了比较。