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Synthesis and optical behaviors of 2-(9-phenanthrenyl)-, 2-(9-anthryl)-, and 2-(1-pyrenyl)-1-alkylimidazole homologues
Authors:Yun-Nan Yan  Dan-Yan Lin  Wen-Long Pan  Xiu-Ling Li  Yi-Qian Wan  Yu-Liang Mai  Hua-Can Song  
Institution:aSchool of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou 510275, PR China;bChina National Analysis Center, Guangzhou 510070, PR China;cGuangdong Public Laboratory of Chemical Engineering, Guangdong Petrochemical Industry Research Institute, Guangzhou 510665, PR China
Abstract:Eight 2-(9-phenanthrenyl)-, 2-(9-anthryl)- and 2-(1-pyrenyl)-1-alkyl-benzimidazole compounds, three 2-(9-anthryl)-1-alkylphenanthroimidazole compounds and five 4,5-diphenyl-1-alkyl-2-(9-anthryl)imidazole compounds were synthesized by alkylation reactions of the corresponding benzimidazole, phenanthroimidazole or imidazole compounds. 2-(10-Bromo-9-anthryl)-1-alkyl-benzimidazole compounds were prepared by bromination reaction of 2-(9-anthryl)-1-alkylbenzimidazole compounds. All the synthesized compounds were characterized by elemental analysis, 1H NMR, 13C NMR, MS or HRMS; their absorption coefficients (var epsilon), maximum absorption λamax, fluorescence emission maximum λem, Stokes shifts and fluorescence quantum yields (ΦF) in ethyl acetate were determined; their fluorescent lifetimes (T1 and T2) were measured in ethyl acetate and in solid state, respectively. The crystal structure of 2-(9-anthryl)-1-n-butyl-4,5-diphenylimidazole (12a) was determined to be triclinic, space group P-1 types, using single crystal X-ray crystallography technique. The results showed that these compounds exhibited moderate fluorescence-emission abilities and higher solubility in most organic solvents than their corresponding starting materials. The relationships between the optical behaviors and structures for these compounds were discussed.
Keywords:2-Arylbenzimidazole homologues  Synthesis  Absorption spectra  Emission spectra  Quantum yields  Fluorescence lifetime
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