Molecular design and synthesis of branched bichromophore-attached linear fluorinated polyimides for nonlinear optical applications

被引:1
|
作者
Man He
Yuming Zhou
Yafeng Gao
Yongjuan Wang
Xiaohai Bu
Tao Zhang
Yiping Cui
Tong Zhang
机构
[1] Southeast University,School of Chemistry and Chemical Engineering
[2] Jiangsu Optoelectronic Functional Materials and Engineering Laboratory,Department of Electronic Engineering
[3] Southeast University,undefined
来源
关键词
Polyimide; Cyclopentanone; Support Information Figure; Poling Efficiency; Linear Optical Property;
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学科分类号
摘要
A branched structure bichromophore was developed to increase the nonlinearity of optical polymers. The branched bichromophore was incorporated into the polymer backbone to prepare a novel nonlinear optical (NLO) side-chain fluorinated polyimide with high optical nonlinearity and good thermal stability. The novel nonlinear optical side-chain fluorinated polyimide exhibits a large electro-optic (E-O) coefficient (γ33) (34 pm/V at 1550 nm) which is larger than that of the conventional side-chain optical polyimide. This is mainly attributable to an increased chromophore concentration and high polarizing efficiency derived from the branched structure. The branched structure of the bichromophore is incorporated into a polymer backbone to result in a high chromophore concentration. Moreover, the three-dimensional (3D) architecture and large molecular size of the branched bichromophore can spatially shield from strong interchromophore electrostatic interactions to enhance the poling efficiency. The side-chain fluorinated polyimide exhibits excellent solubility in common organic solvents, good film-forming property, high glass-transition temperature (Tg) (190 °C) and thermal stability up to 235 °C.
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页码:3370 / 3377
页数:7
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