Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona 85721, USA.
J Am Chem Soc. 2010 Apr 21;132(15):5501-6. doi: 10.1021/ja1005338.
The first microwave spectrum for 1,2-dihydro-1,2-azaborine has been measured in the frequency range 7-18 GHz, providing accurate rotational constants and nitrogen and boron quadrupole coupling strengths for three isotopomers, H(6)C(4)(11)B(14)N, H(6)C(4)(10)B(14)N, and H(5)DC(4)(11)B(14)N. The measured rotational constants were used to accurately determine coordinates for the substituted atoms and provide sufficient data to determine most of the important structural parameters for this molecule. The spectra were obtained using a pulsed beam Fourier transform microwave spectrometer, with sufficient resolution to allow accurate measurements of (14)N, (11)B, and (10)B nuclear quadrupole hyperfine interactions. High-level ab initio calculations provided structural parameters and quadrupole coupling strengths that are in very good agreement with measured values. The rotational constants for the parent compound are A = 5657.335(1), B = 5349.2807(5), and C = 2749.1281(4) MHz, yielding the inertial defect Delta(0) = 0.02 amu x A(2) for the ground-state structure. The observed near-zero and positive inertial defect clearly indicates that the molecular structure of 1,2-dihydro-1,2-azaborine is planar. The least-squares fit analysis to determine the azaborine ring structure yielded the experimental bond lengths and 2sigma errors R(B-N) = 1.45(3) A, R(B-C) = 1.51(1) A, and R(N-C) = 1.37(3) A for the ground-state structure. Interbond angles for the ring were also determined. An extended Townes-Dailey population analysis of the boron and nitrogen quadrupole coupling constants provided the valence p-electron occupancy p(c) = 0.3e for boron and p(c) = 1.3e for nitrogen.
1,2-二氢-1,2-氮杂硼烷的第一个微波光谱已经在 7-18GHz 的频率范围内进行了测量,为三种同位素 H(6)C(4)(11)B(14)N、H(6)C(4)(10)B(14)N 和 H(5)DC(4)(11)B(14)N 提供了准确的转动常数和氮、硼的四极耦合强度。测量的转动常数用于精确确定取代原子的坐标,并提供足够的数据来确定该分子的大多数重要结构参数。该光谱是使用脉冲束傅里叶变换微波光谱仪获得的,具有足够的分辨率,可以准确测量 (14)N、(11)B 和 (10)B 核四极超精细相互作用。高级从头算计算提供了结构参数和四极耦合强度,与测量值非常吻合。母体化合物的转动常数为 A = 5657.335(1)、B = 5349.2807(5)和 C = 2749.1281(4)MHz,得出基态结构的惯性缺陷 Delta(0) = 0.02 amu x A(2)。观察到的近零和正惯性缺陷清楚地表明,1,2-二氢-1,2-氮杂硼烷的分子结构是平面的。确定氮杂硼环结构的最小二乘法拟合分析得出了实验键长和 2sigma 误差 R(B-N) = 1.45(3)A、R(B-C) = 1.51(1)A 和 R(N-C) = 1.37(3)A 用于基态结构。还确定了环的键间角。硼和氮的四极耦合常数的扩展 Townes-Dailey 布居分析提供了硼的价层 p 电子占有率 p(c) = 0.3e 和氮的 p(c) = 1.3e。