Sundararaman Anand, Venkatasubbaiah Krishnan, Victor Maria, Zakharov Lev N, Rheingold Arnold L, Jäkle Frieder
Department of Chemistry, Rutgers University-Newark, 73 Warren Street, Newark, NJ 07102, USA.
J Am Chem Soc. 2006 Dec 27;128(51):16554-65. doi: 10.1021/ja064396b.
The bifunctional conjugated organoboranes Ar2B-bt-BAr2, which contain 2,2'-bithiophene (bt) linkers and different aryl substituents on boron (3: Ar = p-tBuC6H4; 4: Ar = C6F5; 5: Ar = C6F5, Fc; Fc = ferrocenyl), have been synthesized. The electronic communication between the boron centers and cooperativity effects in the binding of pyridine have been investigated by a comprehensive study using X-ray crystallography, DFT calculations, cyclic voltammetry, 1H and 19F NMR, and UV visible absorption and emission spectroscopy. A comparison of the single-crystal X-ray structures of 4 and 4Py2 revealed a strongly diminished bond alternation in the thiophene rings for 4, indicative of a high degree of electronic delocalization. DFT calculations are in good agreement with the structural features determined from the X-ray analysis and, consistent with the experimental absorption and emission data, predict a smaller HOMO-LUMO gap for green luminescent 4 in comparison to blue luminescent 3. The complexation of pyridine to the two boron centers was further investigated by 1H and 19F NMR for 4 and by 1H NMR and UV-visible absorption spectroscopy for 3. We found that binding of the first pyridine molecule to one of the boryl groups significantly lowers the Lewis acidity of the other boryl group. For 3, the interaction parameter a, which provides a measure of communication between the boron sites, was determined to be a = 0.23 by UV-visible titration and 0.21 by 1H NMR spectroscopy. Further enhanced electronic communication was observed for the more highly Lewis acidic fluorinated derivative 4, for which a = 0.025 according to 19F and 1H NMR spectroscopy.
已合成了双功能共轭有机硼烷Ar2B-bt-BAr2,其含有2,2'-联噻吩(bt)连接基且硼上带有不同的芳基取代基(3:Ar = 对叔丁基苯基;4:Ar = 五氟苯基;5:Ar = 五氟苯基,二茂铁基;Fc = 二茂铁基)。通过使用X射线晶体学、密度泛函理论(DFT)计算、循环伏安法、1H和19F核磁共振、紫外可见吸收和发射光谱进行的综合研究,对硼中心之间的电子通讯以及吡啶结合中的协同效应进行了研究。4和4Py2的单晶X射线结构比较表明,4的噻吩环中键的交替明显减弱,这表明电子离域程度很高。DFT计算与X射线分析确定的结构特征高度吻合,并且与实验吸收和发射数据一致,预测绿色发光的4与蓝色发光的3相比,其最高占据分子轨道(HOMO)-最低未占据分子轨道(LUMO)能隙更小。通过对4进行1H和19F核磁共振以及对3进行1H核磁共振和紫外可见吸收光谱,进一步研究了吡啶与两个硼中心的络合作用。我们发现,第一个吡啶分子与一个硼基的结合会显著降低另一个硼基的路易斯酸度。对于3,通过紫外可见滴定法确定的相互作用参数a(用于衡量硼位点之间的通讯)为a = 0.23,通过1H核磁共振光谱法确定为a = 0.21。对于路易斯酸性更强的氟化衍生物4,观察到了进一步增强的电子通讯,根据19F和1H核磁共振光谱,其a = 0.025。