Centro de Química Estrutural, Departamento de Engenharia Química e Biológica, Instituto Superior Técnico, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.
Inorg Chem. 2009 Dec 7;48(23):11176-86. doi: 10.1021/ic901519s.
New 2-iminophenanthro[9,10-c]pyrrole ligand precursors containing phenyl or 2,6-diisopropylphenyl groups at the imine nitrogen substituent, 2-arylformiminophenanthro[9,10-c]pyrroles (aryl = phenyl IIa, 2,6-diisopropylphenyl IIb) were synthesized and deprotonated in situ with NaH, originating solutions of the corresponding sodium salts (IVa, IVb). The reaction of these salts with zinc chloride gave the homoleptic bis-ligand Zn(II) complexes [Zn(kappa(2)N,N'-2-arylformiminophenanthro[9,10-c]pyrrolyl)(2)] (aryl = phenyl 2a, 2,6-diisopropylphenyl 2b). The new ligand precursors and complexes were characterized by NMR, elemental analysis, UV/vis spectroscopy, and X-ray crystallography, when possible. The photophysical characterization was carried out using steady-state and picosecond time-resolved luminescence techniques in solution. The influence of the pi-extended conjugation of the condensed phenanthro group on the deprotonated iminopyrrolyl ligands coordinated to Zn(2+) greatly enhances fluorescence quantum yields of the complexes (2a, 2b) in relation to those of their ligand precursors (IIa, IIb). Complex 2a shows emission in the green spectral region (lambda(max) = 494 nm), presenting the highest fluorescence quantum yield (phi(f) = 8.8%). In the case of the complex 2b (phi(f) = 3.9%), the bulkiness of the 2,6-diisopropyl substituents of the arylimino group highly restricts the aryl ring rotation toward coplanarity with the ligand framework, inducing a shift in the emission to the blue region (lambda(max) = 459 nm). The values of the radiative (k(f)) and radiationless rate constants (k(nr)) show that the fluorescence quantum yield enhancement in the complexes results from a 50-fold increase in k(f) values, indicating much more allowed pi-pi* transitions in complexes 2a and 2b than those occurring in the ligand precursors IIa and IIb, with an essentially n-pi* character. These assignments were confirmed by density-functional theory (DFT) and time-dependent DFT (TD-DFT) molecular orbital calculations. Simple 2-aryliminopyrrole ligand precursors (Ia, Ib) and their Zn(II) complexes (1a, 1b) were also prepared to compare their photophysical properties with those of the corresponding 2-aryliminophenanthro[9,10-c]pyrrolyl compounds.
新的 2-亚氨基菲咯并[9,10-c]吡啶配体前体,在亚胺氮取代基上含有苯基或 2,6-二异丙基苯基,2-芳基甲亚胺菲咯并[9,10-c]吡啶(芳基=苯基 IIa,2,6-二异丙基苯基 IIb)被合成并与 NaH 在原位去质子化,生成相应的钠盐(IVa,IVb)溶液。这些盐与氯化锌反应得到同型双配体 Zn(II)配合物[Zn(kappa(2)N,N'-2-芳基甲亚胺菲咯并[9,10-c]吡啶基)(2)](芳基=苯基 2a,2,6-二异丙基苯基 2b)。新的配体前体和配合物通过 NMR、元素分析、UV/vis 光谱和 X 射线晶体学进行了表征,在可能的情况下。光物理性质通过稳态和皮秒时间分辨荧光技术在溶液中进行了研究。稠合菲咯基团的 pi 扩展共轭对配位到 Zn(2+)的去质子化亚氨基吡啶配体的影响极大地提高了配合物(2a,2b)的荧光量子产率,与它们的配体前体(IIa,IIb)相比。配合物 2a 在绿光区(lambda(max)=494nm)发射,呈现出最高的荧光量子产率(phi(f)=8.8%)。在配合物 2b(phi(f)=3.9%)的情况下,芳基亚氨基的 2,6-二异丙基取代基的体积极大地限制了芳环向与配体框架共面的旋转,导致发射向蓝色区域(lambda(max)=459nm)移动。辐射(k(f))和非辐射速率常数(k(nr))的值表明,配合物中荧光量子产率的增强是由于 k(f)值增加了 50 倍,表明配合物 2a 和 2b 中发生的 pi-pi跃迁比配体前体 IIa 和 IIb 中的跃迁更允许,具有本质上的 n-pi特征。这些分配通过密度泛函理论(DFT)和时变密度泛函理论(TD-DFT)分子轨道计算得到了证实。还制备了简单的 2-芳基亚氨基吡啶配体前体(Ia,Ib)及其 Zn(II)配合物(1a,1b),以比较它们的光物理性质与相应的 2-芳基亚氨基菲咯并[9,10-c]吡啶化合物的性质。