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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Combined Electron-Diffraction, Spectroscopic, and Theoretical Determination of the Structure of N-Deuterio-trans-Methyldiazene, CH3N=ND. Conformational Effects of the N=N Double Bond
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Combined Electron-Diffraction, Spectroscopic, and Theoretical Determination of the Structure of N-Deuterio-trans-Methyldiazene, CH3N=ND. Conformational Effects of the N=N Double Bond

机译:结合电子 - 衍射,光谱和理论测定N-氘代 - 反式 - 甲基二亚二亚二亚二亚二亚二亚二亚二亚二亚二亚二亚二亚二亚亚亚二亚二亚亚二亚亚亚二亚二亚甲基。 n = n双键的构象效应

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Gas phase electron-diffraction (GED) data obtained at a nozzle-tip temperature of 273 K have been combined with spectroscopic vibrational-rotational constants to determine the structure of trans-methyldiazene, an important prototype for the N=N double bond. The N-deuterio form CH3N=ND was used in the study since it is appreciably more stable than CH3N=NH. Both the theoretical and experimental results are consistent with a planar C-s trans-CNND framework. The experimental results (r(alpha)(0)/r(g)(273)) are 1.465(2)/1.467(2) angstrom for the CN bond, 1.248(1)/1.251(1) angstrom for the N=N double bond, and 1.037(17)/1.048(17) angstrom for the ND bond. The NND angle is 105.9(20)/105.6(20)degrees and the CNN angle is 112.4(5)/112.2(5)degrees, where the uncertainties in parentheses are twice the standard deviation from a simultaneous least-squares fit of the GED and microwave data. For the methyl group, both theory and experiment indicate that two CH bonds are symmetrically arranged out of the molecular plane while the third CH' lies in the plane in an eclipsed (not staggered) cis-H'CNN arrangement. Theoretical calculations (B3LYP/cc-PVnZ and CCSD(T)/cc-PVnZ) suggest a slight distortion of the methyl group, with a tilt of the methyl top axis about 5 degrees away from the N=N bond. The experimental data are consistent with this picture but are equally consistent with an undistorted methyl group. Inclusion of distortions predicted by theory in a complete basis set limit (CBS) lead to a preferred analysis with average values of 1.086(5)/1.106(5) angstrom for the CH bond length and an average HCH angle of 108.3(8)/107.8(8)degrees. Features of the structure of methyldiazene and related compounds are discussed. It is found that the short N=N bond length in the diazenes produces much greater steric repulsion than in analogous ethylene compounds and this effect leads to some interesting conformational and distortion differences for attached CH3 groups.
机译:在273k的喷嘴尖端温度下获得的气相电子 - 衍射(GED)数据与光谱振动旋转常数组合以确定反式甲基二亚二亚二亚二亚乙烯的结构,是N = N双键的重要原型。在该研究中使用N-氘代形式CH 3N = Nd,因为它显着比CH3N = NH更稳定。理论和实验结果都与平面C-S Trans-CNND框架一致。实验结果(R(α)(0)/ r(g)(273)为CN键的1.465(2)/ 1.467(2)埃,N =为1.248(1)/ 1.251(1)埃= n双键,1.037(17)/1.048(17)埃克斯特罗姆用于ND键。 NND角度为105.9(20)/105.6(20)度,CNN角度为112.4(5)/ 112.2(5)度,其中括号中的不确定性是与GED的同时最小二乘拟合的标准偏差的两倍和微波数据。对于甲基,理论和实验表明,两个CH键对对称布置出分子平面,而第三CH'位于诸如被蚀(未交错)的CIS-H'cnn布置的平面中。理论计算(B3LYP / CC-PVNZ和CCSD(T)/ CC-PVNZ)表明甲基的轻微变形,甲基顶轴倾斜约5度远离N = N键。实验数据与该图像一致,但与未造成的甲基同等一致。在完整的基础设定极限(CBS)上含有理论预测的扭曲导致优选的分析,其平均值为1.086(5)/ 1.106(5)埃为CH键长度,平均HCH角为108.3(8)/ 107.8(8)度。 methyldiazene和相关化合物的结构特征进行了讨论。结果发现,二聚体中的短n = N键长度比与类似乙烯化合物更大的空间排斥,并且这种效果导致附着的CH3基团的一些有趣的构象和变形差异。

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