Department of Chemistry and Biochemistry, University of Arizona , Tucson, Arizona 85721, United States.
J Phys Chem A. 2013 Oct 3;117(39):9525-30. doi: 10.1021/jp312201r. Epub 2013 Mar 8.
New microwave spectra were measured to obtain rotational constants and centrifugal distortion constants for the DCCCOOH···HOOCH and HCCCOOD···DOOCH isotopologues. Rotational transitions were measured in the frequency range of 4.9-15.4 GHz, providing accurate rotational constants, which, combined with previous rotational constants, allowed an improved structural fit for the propiolic acid-formic acid complex. The new structural fit yields reasonably accurate orientations for both the propiolic and formic acid monomers in the complex and more accurate structural parameters describing the hydrogen bonding. The structure is planar, with a positive inertial defect of Δ = 1.33 amu Å(2). The experimental structure exhibits a greater asymmetry for the two hydrogen bond lengths than was obtained from the ab initio mp2 calculations. The best-fit hydrogen bond lengths have an r(O1-H1···O4) of 1.64 Å and an r(O3-H2···O2) of 1.87 Å. The average of the two hydrogen bond lengths is r(av)(exp) = 1.76 Å, in good agreement with r(av)(theory) = 1.72 Å. The center of mass separation of the monomers is R(CM) = 3.864 Å. Other structural parameters from the least-squares fit using the experimental rotational constants are compared with theoretical values. The spectra were obtained using two different pulsed beam Fourier transform microwave spectrometers.
新的微波光谱被测量以获得 DCCCOOH···HOOCH 和 HCCCOOD···DOOCH 同位素的旋转常数和离心扭曲常数。旋转跃迁在 4.9-15.4GHz 的频率范围内被测量,提供了准确的旋转常数,这些常数与以前的旋转常数相结合,使得对丙炔酸-甲酸复合物的结构拟合得到了改进。新的结构拟合为复合物中的丙炔酸和甲酸单体提供了合理准确的取向,以及更准确描述氢键的结构参数。结构是平面的,惯性缺陷为Δ=1.33amuÅ(2)。实验结构在两个氢键长度上表现出比从头算 mp2 计算更大的不对称性。最佳拟合氢键长度的 r(O1-H1···O4)为 1.64Å,r(O3-H2···O2)为 1.87Å。两个氢键长度的平均值 r(av)(exp)为 1.76Å,与 r(av)(theory)为 1.72Å 很好地吻合。单体的质心分离为 R(CM)=3.864Å。使用实验旋转常数进行最小二乘拟合的其他结构参数与理论值进行了比较。这些光谱是使用两种不同的脉冲束傅里叶变换微波光谱仪获得的。