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Synthesis, microwave spectra, x-ray structure, and high-level theoretical calculations for formamidinium formate

机译:甲酰胺甲酸甲酸甲酸甲酸盐的合成,微波谱,X射线结构和高级理性计算

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An efficient synthesis of formamidinium formate is described. The experimental x-ray structure shows both internal and external H-bonding to surrounding molecules. However, in the gas phase, this compound occurs as a doubly hydrogen bonded dimer between formamidine and formic acid. This doubly hydrogen-bonded structure is quite different from the solid state structure. Microwave spectra were measured in the 6-14 GHz range using a pulsed-beam Fourier transform microwave (MW) spectrometer. The two nonequivalent N-atoms exhibit distinct quadrupole coupling. The rotational, centrifugal distortion, and quadrupole coupling constants determined from the spectra have the following values: A = 5880.05(2), B = 2148.7710(2), C = 1575.23473(13), 1.5 chi aa (N1) = 1.715(3), 0.5(chi bb-chi cc) (N1) = 1.333(4), 1.5 chi aa (N2) = 0.381(2), 0.25(chi bb-chi cc) (N2) = -0.0324(2), and D-J = 0.002145(5) MHz. The experimental inertial defect, Delta = 0.243 amu angstrom(2), is consistent with a planar structure. Accurate and precise rotational constants (A, B, and C), obtained from the MW measurements, were closely reproduced, within 1%-2% of the measured values, with the MU 1 DFT theoretical calculations. Detailed comparison of the measured and calculated A, B, and C rotational constants confirms the planar doubly hydrogen bonded structure. The calculated nitrogen quadrupole coupling strengths of the monomer are quite different from either of the two nitrogen sites of the dimer. The poor agreement between measured and calculated quadrupole coupling strengths shows that the dimer is not locked in the equilibrium structure but is likely undergoing large amplitude vibrational motion of the hydrogen atoms moving between the N and 0 atoms involved in the hydrogen bonding. Published under license by AIP Publishing.
机译:描述了甲脒甲酸甲酰甲酸酯的有效合成。实验X射线结构显示内部和外部H键合到周围分子。然而,在气相中,该化合物作为甲脒和甲酸之间的双氢键二聚体发生。这种双氢键结构与固态结构非常不同。使用脉冲束傅里叶变换微波(MW)光谱仪在6-14GHz范围内测量微波光谱。两种非异常的n个原子表现出明显的四极耦合。由光谱确定的旋转,离心畸变和四极耦合常数具有以下值:a = 5880.05(2),B = 2148.7710(2),C = 1575.23473(13),1.5CHi AA(N1)= 1.715(3 ),0.5(CHI BB-CHI CC)(N1)= 1.333(4),1.5 CHI AA(N2)= 0.381(2),0.25(CHI BB-CHI CC)(N2)= -0324(2),和DJ = 0.002145(5)MHz。实验惯性缺陷,德尔塔= 0.243埃AMU(2),是具有平面结构一致。从MW测量中获得的精确且精确的旋转常数(A,B和C)被密切地再现在测量值的1%-2%之内,具有MU 1 DFT理论计算。详细比较测量和计算的A,B和C旋转常数证实平面双氢键结构。计算的单体的计算的氮素四腹耦合强度与二聚体的两个氮气部位中的任一种完全不同。测量和计算的四极耦合强度之间的差的一致性表明二聚体未锁定在平衡结构中,但是可能经历在氢键中涉及的N和0原子之间移动的氢原子的大振幅振动运动。通过AIP发布在许可证下发布。

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