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Microwave spectra, molecular structure, and aromatic character of 4a,8a-azaboranaphthalene

机译:4A,8A-氮杂萘的微波光谱,分子结构和芳族特征

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The microwave spectra for seven unique isotopologues of 4a,8a-azaboranaphthalene [hereafter referred to as BN-naphthalene] were measured using a pulsed-beam Fourier transform microwave spectrometer. Spectra were obtained for the normal isotopologues with B-10, B-11, and all unique single C-13 and the N-15 isotopologue (with 11B), in natural abundance. The rotational, centrifugal distortion and quadrupole coupling constants determined for the (BN)-B-11-N-14 isotopologue are A = 3042.712 75(43) MHz, B = 1202.706 57(35) MHz, C = 862.220 13(35) MHz, D-J = 0.06(1) kHz, 1.5 chi(aa) (N-14) = 2.5781(61) MHz, 0.25(chi(bb)-chi(cc)) (N-14) = -0.1185(17) MHz, 1.5 chi(aa) (11B) = -3.9221(75) MHz, and 0.25(chi(bb) -chi(cc)) (11B) = -0.9069(24) MHz. The experimental inertial defect is Delta = -0.159 amu angstrom(2), which is consistent with a planar structure for the molecule. The B-Nbond length from the experimentally determined structure is 1.47 angstrom, which indicates p-bonding character between the B and N. The measured quadrupole coupling strengths provide important and useful information about the bonding, orbital occupancy, and aromatic character for this aromatic molecule. Extended Townes-Dailey analyses were used to determine the B and N electron sp(2)-hybridized and p-orbital occupations. These results are compared with electron orbital occupations from the natural bond orbital option in theoretical calculations. From the analyses, it was determined that BN-naphthalene has aromatic character similar to that of other N-containing aromatics. The results are compared with similar results for B-N bonding in 1,2-dihydro-1,2-azaborine and BN-cyclohexene. Accurate and precise structural parameters were obtained from the microwave measurements on seven isotopologues and from high-level G09 calculations. (C) 2016 AIP Publishing LLC.
机译:使用脉冲束傅立叶傅里叶变换微波谱仪测量七个独特同位素的微波光谱[以下称为BN-萘]。以B-10,B-11和所有独特的单一C-13和N-15同位素(用11B)在天然丰度中获得光谱。测定对(BN)-B-11-N-14同位素的旋转,离心畸变和四极耦合常数是A = 3042.712 75(43)MHz,B = 1202.706 57(35)MHz,C = 862.2013(35) MHz,DJ = 0.06(1)kHz,1.5 Chi(AA)(N-14)= 2.5781(61)MHz,0.25(CHI(BB)-CHI(CC))(N-14)= -0.1185(17) MHz,1.5 Chi(AA)(11B)= -3.9221(75)MHz和0.25(CHI(BB)-CHI(CC))(11B)= -0.9069(24)MHz。实验惯性缺陷是Delta = -0.159 Amu angstrom(2),其与分子的平面结构一致。来自实验确定的结构的B-Nbond长度为1.47埃,表示B和N之间的p键合特征。测量的四极耦合强度提供了关于该芳香族分子的粘合,轨道占占性和芳族特征的重要信息和有用的信息。使用扩展的城镇 - Dailey分析来确定B和N电子SP(2) - 杂交和p轨道职业。这些结果与来自理论计算的自然键轨道选项的电子轨道职业进行了比较。从分析中,确定Bn-萘具有与其他含N芳烃的芳族特征类似。将结果与在1,2-二氢-1,2-氮杂环胺和Bn-环己烯中的B-N键合相似的结果。从七同类测量和高水力测量和高水平的G09计算中获得精确且精确的结构参数。 (c)2016 AIP发布LLC。

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