Berger Christopher J, He Gang, Merten Christian, McDonald Robert, Ferguson Michael J, Rivard Eric
Department of Chemistry, University of Alberta , 11227 Saskatchewan Drive, Edmonton, Alberta, Canada T6G 2G2.
Inorg Chem. 2014 Feb 3;53(3):1475-86. doi: 10.1021/ic402408t. Epub 2014 Jan 15.
A series of Lewis base adducts of 9-bromo-9-borafluorene (BrBFl-LB, LB = IPr, IPrCH2, PPh3, and PCy3), parent borafluorenes (HBFl-IPr and HBFl-IPrCH2), and the bisadduct [(DMAP)2BFl]Br were prepared and structurally characterized (IPr = [(HCNDipp)2C:], IPrCH2 = [(HCNDipp)2C═CH2], Dipp = 2,6-i-Pr2C6H3, and DMAP = N,N-dimethylaminopyridine). The adducts BrBFl-IPr, BrBFl-PPh3, BrBFl-PCy3, [(DMAP)2BFl]Br, BrBFl-IPrCH2, and HBFl-IPrCH2 were found to exhibit bright blue luminescence with low to moderately high quantum efficiencies (19 to 63%). Selective irradiation at different excitation wavelengths revealed the presence of two distinct emission processes in the adducts BrBFl-LB, leading to a ligand-independent, presumably borafluorene-based, blue light emission at 435 nm and another less intense emission band in the ultraviolet region (315-324 nm); [(DMAP)2BFl]Br exhibits an emission profile that tails into the visible region. Time-dependent density functional theory studies are also included for representative borafluorene adducts. With a judicious choice of functional groups at boron, one can envisage the future generation of a whole library of 4-coordinate borafluorene-based luminogens that complement the efficient light-emitting behavior known for the widely studied boron-dipyrromethene analogues.
制备了一系列9-溴-9-硼芴的路易斯碱加合物(BrBFl-LB,LB = IPr、IPrCH2、PPh3和PCy3)、母体硼芴(HBFl-IPr和HBFl-IPrCH2)以及双加合物[(DMAP)2BFl]Br,并对其进行了结构表征(IPr = [(HCNDipp)2C:],IPrCH2 = [(HCNDipp)2C═CH2],Dipp = 2,6-二异丙基苯基,DMAP = N,N-二甲基氨基吡啶)。发现加合物BrBFl-IPr、BrBFl-PPh3、BrBFl-PCy3、[(DMAP)2BFl]Br、BrBFl-IPrCH2和HBFl-IPrCH2呈现明亮的蓝色发光,量子效率低至中等偏高(19%至63%)。在不同激发波长下的选择性照射表明,加合物BrBFl-LB中存在两种不同的发射过程,导致在435 nm处出现与配体无关的、可能基于硼芴的蓝光发射,以及在紫外区域(315 - 324 nm)出现另一个强度较低的发射带;[(DMAP)2BFl]Br的发射光谱延伸至可见光区域。还对代表性的硼芴加合物进行了含时密度泛函理论研究。通过在硼上明智地选择官能团,可以设想未来生成一整套基于4-配位硼芴的发光剂库,以补充广泛研究的硼二吡咯亚甲基类似物所具有的高效发光行为。