酞菁高分子修饰及其光电性质研究进展  被引量:1

Polymeric modification and optoelectronic properties of phthalocyanines

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作  者:林楹[1] 陈彧[1] 何楠[1] 刘莹[1] 庄晓东[1] 白金瑞[1] 

机构地区:[1]教育部结构可控先进功能材料及其制备重点实验室华东理工大学化学与分子工程学院化学系,上海200237

出  处:《化学研究与应用》2007年第2期121-130,共10页Chemical Research and Application

基  金:教育部新世纪优秀人才计划(NCET-05-0413)资助项目;科技部中/爱国际合作计划(CI-2004-06)资助项目;国家自然科学基金(20676034)资助项目;上海市优秀学科带头人计划(05XD14004)资助项目;上海曙光学者计划(05SG35)资助项目

摘  要:酞菁拥有高度离域的二维18π电子共轭体系、易于调变的分子结构、优良的热和化学稳定性和易于处理加工等特点,可以在很宽的范围内剪裁它们的物理、光电和化学参数,其潜在的巨大应用价值已受到科学与企业界的广泛关注和研究。与[60]富勒烯一样,酞菁分子也可以通过共价键合的方式引入到高分子主链或侧链形成不同类型的高分子,亦可得到诸如酞菁网状高分子和树枝状酞菁大分子等高分子材料;与适宜的高分子材料掺杂或共混能形成含酞菁的高分子复合材料。本文详细地介绍了近年来酞菁高分子修饰与光电性质研究进展。Polymeric modification and optoelectronic properties of phthalocyanines ( Pc' s) have been reviewed. A high architectural flexibility in their structures facilitates the tailoring of their physical, optoelectronic and chemical parameters in a very broad range, which has attracted considerable interest for many decades because of their potential applications in the fields of nonlinear optics, photoconductivity, photoveltaic ceils, chemical sensors, optical data storage, digital versatile discs,liquid crystals, photodynamic cancer therapy, and others. Similar to [ 60 ] fullerenc, one of the most investigated classes of functional organic materials, phthalocyanine may be introduced into the main chain of an organic polymer to form a "pearl neck]ace" polymer, or into the side chain of a polymer as a pendant group to form a "charm bracelet" polymer. It also forms Pc-networks, pelyphthalocyanines and dendritic Pc macromolecules. Doping with other polymers previously prepared can result in the formation of Pc-based polymer composite materials.

关 键 词:酞菁 高分子修饰 聚合反应 光电性质 

分 类 号:TQ613.5[化学工程—精细化工]

 

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