Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona 85721, USA.
J Chem Phys. 2010 Nov 7;133(17):174304. doi: 10.1063/1.3501356.
The rotational spectra for six isotopologues of the complex formed between formamide and formic acid have been measured using a pulsed-beam Fourier transform microwave spectrometer and analyzed to obtain rotational constants and quadrupole coupling parameters. The rotational constants and quadrupole coupling strengths obtained for H (12)COOH-H(2) (14)NCOH are A = 5889.465(2), B = 2148.7409(7), 1575.1234(6), eQq(aa) = 1.014(5), eQq(bb) = 1.99(1), and eQq(cc) = -3.00(1) MHz. Using the 15 rotational constants obtained for the H (13)COOH, HCOOD, DCOOH, and H(2) (15)NCHO isotopologues, key structural parameters were obtained from a least-squares structure fit. Hydrogen bond distances of 1.78 Å for R(O3⋯H1) and 1.79 Å for R(H4⋯O1) were obtained. The "best fit" value for the angle(C-O-H) of formic acid is significantly larger than the monomer value of 106.9° with an optimum value of 121.7(3)°. The complex is nearly planar with inertial defect Δ = -0.158 amu Å(2). The formamide proton is moved out of the molecular plane by 15(3)° for the best fit structure. Density functional theory using B3PW91, HCTH407, and TPSS as well as MP2 and CCSD calculations were performed using 6-311++G(d,p) and the results were compared to experimentally determined parameters.
已使用脉冲束傅里叶变换微波光谱仪测量了六同位素形式酰胺和甲酸形成的复合物的旋转光谱,并对其进行了分析以获得旋转常数和四极耦合参数。对于 H (12)COOH-H(2) (14)NCOH,获得的旋转常数和四极耦合强度为 A = 5889.465(2),B = 2148.7409(7),1575.1234(6),eQq(aa)= 1.014(5),eQq(bb)= 1.99(1),eQq(cc)= -3.00(1)MHz。使用对于 H (13)COOH,HCOOD,DCOOH 和 H(2) (15)NCHO 同位素获得的 15 个旋转常数,从最小二乘结构拟合中获得了关键结构参数。氢键距离为 R(O3⋯H1)1.78 Å和 R(H4⋯O1)1.79 Å。获得了甲酸的“最佳拟合”角度(C-O-H)值,该值明显大于单体值 106.9°,最佳值为 121.7(3)°。复合物几乎是平面的,惯性缺陷Δ= -0.158 amu Å(2)。对于最佳拟合结构,形式酰胺质子从分子平面移动了 15(3)°。使用 B3PW91、HCTH407 和 TPSS 以及 MP2 和 CCSD 进行了密度泛函理论计算,使用了 6-311++G(d,p),并将结果与实验确定的参数进行了比较。