Dorofeeva Olga V, Ferenets Anna V, Karasev Nikolai M, Vilkov Lev V, Oberhammer Heinz
Department of Chemistry, Moscow State University, Moscow 119991, Russia.
J Phys Chem A. 2008 Jun 5;112(22):5002-9. doi: 10.1021/jp800941z. Epub 2008 May 8.
3,5-Difluoronitrobenzene (3,5-DFNB) and 2,6-difluoronitrobenzene (2,6-DFNB) have been studied by gas-phase electron diffraction (GED), MP2 ab initio, and by B3LYP density functional calculations. Refinements of r h1 and r e static and r h1 dynamic GED models were carried out for both molecules. Equilibrium r e structures were determined using anharmonic vibrational corrections to the internuclear distances ( r e - r a) calculated from B3LYP/cc-pVTZ cubic force fields. 3,5-DFNB possesses a planar structure of C 2 v symmetry with the following r e values for bond lengths and bond angles: r(C-C) av = 1.378(4) A, r(C-N) = 1.489(6) A, r(N-O) = 1.217(2) A, r(C-F) = 1.347(5) A, angleC6-C1-C2 = 122.6(6) degrees , angleC1-C2-C3 = 117.3(3) degrees , angleC2-C3-C4 = 123.0(3) degrees , angleC3-C4-C5 = 116.9(6) degrees , angleC-C-N = 118.7(3) degrees , angleC-N-O = 117.3(4) degrees , angleO-N-O = 125.5(7) degrees , angleC-C-F = 118.6(7) degrees . The uncertainties in parentheses are three times the standard deviations. As in the case of nitrobenzene, the barrier to internal rotation of the nitro group in 3,5-DFNB, V 90 = 10 +/- 4 kJ/mol, is substantially lower than that predicted by quantum chemical calculations. The presence of substituents in the ortho positions force the nitro group to rotate about the C-N bond, out of the plane of the benzene ring. For 2,6-DFNB, a nonplanar structure of C 2 symmetry with a torsional angle of phi(C-N) = 53.8(14) degrees and the following r e values for structural parameters was determined by the GED analysis: r(C-C) av = 1.383(5) A, r(C-N) = 1.469(7) A, r(N-O) = 1.212(2) A, r(C-F) = 1.344(4) A, angleC6-C1-C2 = 118.7(5) degrees , angleC1-C2-C3 = 121.2(2) degrees , angleC2-C3-C4 = 119.0(2) degrees , angleC3-C4-C5 = 121.1(4) degrees , angleC-C-N = 120.6(2) degrees , angleC-N-O = 115.7(4) degrees , angleO-N-O = 128.6(7) degrees , angleC-C-F = 118.7(5) degrees . The refinement of a dynamic model led to barriers V 0 = 16.5 +/- 1.5 kJ/mol and V 90 = 2.2 +/- 0.5 kJ/mol, which are in good agreement with values predicted by B3LYP/6-311++G(d,p) and MP2/ cc-pVTZ calculations. The values of C-F bond lengths are similar in both molecules. This is in contrast to the drastic shortening of the C-F bond in the ortho position in 2-fluoronitrobenzene compared to the C-F bond length in the meta and para position in 3- and 4-fluoronitrobenzene observed in an earlier GED study.
已通过气相电子衍射(GED)、MP2从头算以及B3LYP密度泛函计算对3,5 - 二氟硝基苯(3,5 - DFNB)和2,6 - 二氟硝基苯(2,6 - DFNB)进行了研究。对这两种分子的r h1和r e静态以及r h1动态GED模型进行了优化。利用对由B3LYP/cc - pVTZ立方力场计算得到的核间距(r e - r a)的非谐振动校正,确定了平衡r e结构。3,5 - DFNB具有C 2 v对称的平面结构,其键长和键角的r e值如下:r(C - C) av = 1.378(4) Å,r(C - N) = 1.489(6) Å,r(N - O) = 1.217(2) Å,r(C - F) = 1.347(5) Å,∠C6 - C1 - C2 = 122.6(6)°,∠C1 - C2 - C3 = 117.3(3)°,∠C2 - C3 - C4 = 123.0(3)°,∠C3 - C4 - C5 = 116.9(6)°,∠C - C - N = 118.7(3)°,∠C - N - O = 117.3(4)°,∠O - N - O = 125.5(7)°,∠C - C - F = 118.6(7)°。括号中的不确定度是标准偏差的三倍。与硝基苯的情况一样,3,5 - DFNB中硝基的内旋转势垒V 90 = 10 ± 4 kJ/mol,远低于量子化学计算预测的值。邻位取代基的存在迫使硝基围绕C - N键旋转,使其偏离苯环平面。对于2,6 - DFNB,通过GED分析确定了具有C 2对称的非平面结构,扭转角φ(C - N) = 53.8(14)°,结构参数的r e值如下:r(C - C) av = 1.383(5) Å,r(C - N) = 1.469(7) Å,r(N - O) = 1.212(2) Å,r(C - F) = 1.344(4) Å,∠C6 - C1 - C2 = 118.7(5)°,∠C1 - C2 - C3 = 121.2(2)°,∠C2 - C3 - C4 = 119.0(2)°,∠C3 - C4 - C5 = 121.1(4)°,∠C - C - N = 120.6(2)°,∠C - N - O = 115.7(4)°,∠O - N - O = 128.6(7)°,∠C - C - F = 118.7(5)°。动态模型的优化得到势垒V 0 = 16.5 ± 1.5 kJ/mol和V 90 = 2.2 ± 0.5 kJ/mol,这与B3LYP/6 - 311++G(d,p)和MP2/cc - pVTZ计算预测的值非常吻合。两种分子中C - F键长的值相似。这与早期GED研究中观察到的2 - 氟硝基苯邻位C - F键相较于3 - 和4 - 氟硝基苯间位和对位C - F键的大幅缩短形成对比。