Saint-Louis Carl Jacky, Shavnore Renée N, McClinton Caleb D C, Wilson Julie A, Magill Lacey L, Brown Breanna M, Lamb Robert W, Webster Charles Edwin, Schrock Alan K, Huggins Michael T
Department of Chemistry, University of West Florida, Pensacola, Florida 32514, USA.
Org Biomol Chem. 2017 Dec 13;15(48):10172-10183. doi: 10.1039/c7ob02415k.
Nine new polycyclic aromatic BN-1,2-azaborine analogues containing the N-BOH moiety were synthesized using a convenient two-step, one-pot procedure. Characterization of the prepared compounds show the luminescence wavelength and the quantum yields of the azaborines were tunable by controlling the power and location of the donor and acceptor substituents on the chromophore. UV-visible spectroscopy and density functional theory (DFT) computations revealed that the addition of electron-donating moieties to the isoindolinone hemisphere raised the energy of the HOMO, resulting in the reduction of the HOMO-LUMO gap. The addition of an electron-accepting moiety to the isoindolinone hemisphere and an electron-donating group to the boronic acid hemisphere decreased the HOMO-LUMO gap considerably, leading to emission properties from partial intramolecular charge transfer (ICT) states. The combined effect of an acceptor on the isoindolinone side and a donor on the boronic acid side (strong acceptor-π-donor) gave the most red-shifted absorption. The polycyclic aromatic BN-1,2-azaborines emitted strong fluorescence in solution and in the solid-state with the largest red-shifted emission at 640 nm and a Stokes shift of Δλ = 218 nm, or Δν = 8070 cm.
使用便捷的两步一锅法合成了九个含有N-BOH部分的新型多环芳族BN-1,2-氮杂硼吲哚类似物。对所制备化合物的表征表明,通过控制发色团上供体和受体取代基的电子效应和位置,可以调节氮杂硼吲哚的发光波长和量子产率。紫外-可见光谱和密度泛函理论(DFT)计算表明,在异吲哚啉酮半球添加供电子基团会提高最高占据分子轨道(HOMO)的能量,导致HOMO-最低未占分子轨道(LUMO)能隙减小。在异吲哚啉酮半球添加吸电子基团并在硼酸半球添加供电子基团会显著减小HOMO-LUMO能隙,导致部分分子内电荷转移(ICT)态的发射特性。异吲哚啉酮侧的受体和硼酸侧的供体(强受体-π-供体)的联合效应产生了最大红移吸收。多环芳族BN-1,2-氮杂硼吲哚在溶液和固态中均发出强荧光,最大红移发射波长为640 nm,斯托克斯位移为Δλ = 218 nm,或Δν = 8070 cm。