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α(β)-四苯氧基酞菁锌的合成、表征和电致发光性能
引用本文:白青龙,张春花,程传辉,李万程,杜国同.α(β)-四苯氧基酞菁锌的合成、表征和电致发光性能[J].应用化学,2012,29(6):643-648.
作者姓名:白青龙  张春花  程传辉  李万程  杜国同
作者单位:(1.内蒙古民族大学化学化工学院 通辽 028043;2.大连理工大学物理与光电工程学院 大连 116024; 3.吉林大学电子科学与工程学院 长春 130012)
摘    要:以3(4)-硝基邻苯二腈和苯酚为原料,经过两步反应合成了α(β)-四苯氧基酞菁锌,通过红外光谱、紫外光谱、核磁共振谱、质谱和元素分析表征了其结构,比较研究其光谱性质。 并以旋涂发光层的方法制备了电致发光器件,研究其电致发光性质。 固态酞菁材料的光致发光波长红移到866~930 nm范围内的近红外波段,β-位取代酞菁发光波长红移的程度比α-位取代酞菁大。 2种器件电致发光波长和酞菁固体材料的光致发光波长较接近,分别在880和885 nm处。

关 键 词:苯氧基酞菁  合成  光致发光  电致发光  红移  
收稿时间:2011-06-22
修稿时间:2011-09-24

Synthesis,Characterization and Luminescent Properties of α(β)-Tetra-phenoxy Phthalocyaninato Zinc
BAI Qinglong , ZHANG Chunhua , CHENG Chuanhui , LI Wancheng , DU Guotong.Synthesis,Characterization and Luminescent Properties of α(β)-Tetra-phenoxy Phthalocyaninato Zinc[J].Chinese Journal of Applied Chemistry,2012,29(6):643-648.
Authors:BAI Qinglong  ZHANG Chunhua  CHENG Chuanhui  LI Wancheng  DU Guotong
Institution:(1.College of Chemistry and Chemical Engineering,Inner Mongglia University for Nationalities,Tongliao 028043,China; 2.School of Physics and Optoelectronic Technology,Dalian University of Technology,Dalian 116024,China; 3.College of Electronic Science and Engineering,Jilin University,Changchun 130012,China)
Abstract:α(β)-tetra-phenoxy phthalocyaninato zinc complexes have been synthesized via a two-step process using 3(4)-nitrobenzene-1,2-dicarbonitrile and phenol as precursors.The products were characterized by means of IR spectrum,UV-Vis spectrum,1H NMR spectrum,mass spectrum and elemental analysis.The UV-Vis spectra,photoluminescence spectra of spin-coated film and pressed solid pellet were compared.The fluorescences of both compressed and spin-coated samples had red-shifts larger than 161 nm compared to that obtained from solution.In addition,their fluorescence peaks are broader than that in solution.The fluorescence of β-substituted phthalocyanines has a greater red-shift than that of α-substituted phthalocyanines.The two kinds of fabricated devices showed similar electroluminescent spectra around 880 nm.
Keywords:phenoxy phthalocyaninato zinc  synthesis  photoluminescence  electroluminescence  red-shift
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