标题: 含树支状及芴基侧取代之聚(2,3-双苯基仲苯乙烯)衍生物之合成及其在高分子电激发光元件应用
Synthesis of Dendritic and Fluorenyl Substituted Poly(2,3-Diphenylphenylene Vinylene) Derivatives and Their Applications in Polymer Light-Emitting Diodes
作者: 许千树
HSU CHAIN-SHU
国立交通大学应用化学系(所)
关键字: 树支状取代基;芴基;水溶性长链;高分子电激发光元件;dendritic groups;fluorenyl;water-soluble spacer;polymer light-emittingdioides.
公开日期: 2008
摘要: 本研究之目的在藉由各种巨大团基如树支状取代基、芴基或水溶性长链之导
入,合成出各种高效率高分子发光材料,并应用于高分子电激发光显示元件上。
本计画将分三年进行:第一年首先合成出含一至三代之树支状侧取代之聚合
物,探讨不同世代之侧取代基对于高分子之热性质及光电性质之影响;第二年
将合成出具双芴基取代之发光高分子,藉由巨大芴基之导入增强材料之发光性
质,并造成更大的蓝位移;第三年将导入水溶性或侧面取代之液晶团基,探讨
此两类高分子材料之物性及其高分子型态之研究。所有合成出来之聚合物均会
以核磁共振仪及红外线光谱仪鉴定其化学结构,以热微差扫瞄卡计及热重分析
仪量测其热性质,以紫外-可见吸收光谱仪及萤光光谱仪测量其光学性质,最后
制备成双层有机电激发光元件以量测其电流密度、亮度及发光效率等元件性质。
The goal of this research is aimed to synthesize highly efficient light-emitting
polymers by the incorporation of bulky substutnets, such as dendritic groups,
fluorenyl, and water-soluble PEO. These materials can be applied in the field of
polymer light-emitting diodes. The project is undergone for three years. In the first
year, one to three generation dendritic groups will be synthesized; thermal and
opto-electrical properties of polymers will be investigated based on different
generation. In the second year, di-fluorene substituted light-emitting polymer will be
synthesized; luminescent properties and larger blue-shift will be promoted by the
introduction of bulky fluorenyl groups. In the third year, water-soluble PEO and
laterally substituted liquid crystal will be introduced into polymer main chain;
physical properties and morphologies of polymer chains will be also studied. The
chemical structures of all synthesized polymers will be identified by NMR and
FT-IR. Thermal properties will be measured by DSC and TGA. Optical properties
will be investigated by UV-vis absorption and fluorescence photometer.
Double-layer electroluminescent devices will be fabricated to evaluate the current
density, brightness and luminescent efficiency of these materials.
官方说明文件#: NSC95-2221-E009-161-MY3
URI: http://hdl.handle.net/11536/102338
https://www.grb.gov.tw/search/planDetail?id=1579835&docId=270459
显示于类别:Research Plans