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作 者:Fenglan Fan Ying Liu Yifan Hong Jinliang Zang Guoguo Kang Tianbo Zhao Xiaodi Tan 范凤兰;刘颖;洪一凡;臧金亮;康果果;赵天波;谭小地(School of optoelectronics,beijing institute of technology,Beijing 100081,China;key laboratory of cluster science of ministry of education,school of chemistry and chemical engineering,beijing institute of technology,Beijing 100081,China;fujian provincial key laboratory of photonics technology,college of photonic and electronic engineering,fujian normal university,Fuzhou 350007,China)
机构地区:[1]School of Optoelectronics,Beijing Institute of Technology,Beijing 100081,China [2]Key Laboratory of Cluster Science of Ministry of Education,School of Chemistry and Chemical Engineering,Beijing Institute of Technology,Beijing 100081,China [3]Fujian Provincial Key Laboratory of Photonics Technology,College of Photonic and Electronic Engineering,Fujian Normal University,Fuzhou 350007,China [4]Corresponding author: xtan@fjnu.edu.cn [5]corresponding author:bit_bipt@126.com
出 处:《Chinese Optics Letters》2018年第11期31-35,共5页中国光学快报(英文版)
基 金:supported by the National Natural Science Foundation of China(NSFC)(Nos.61205053and 61475019);the International Graduate Exchange Program of Beijing Institute of Technology
摘 要:Novel composite materials are synthesized by incorporating N-acryloylmorpholine(ACMO) in highly concentrated phenanthrenequinone(PQ) doped poly(methyl methacrylate)(PMMA). The photosensitizer concentration of PQ was increased from 0.7 wt. % to 1.8 wt. %. The doping of ACMO component results in a higher diffraction efficiency and photosensitivity than a typical PQ/PMMA system. The enhanced performance of the material may stem from the ACMO molecules, which might open a new route for improving the holographic performance of the PQ/PMMA photopolymer.Novel composite materials are synthesized by incorporating N-acryloylmorpholine(ACMO) in highly concentrated phenanthrenequinone(PQ) doped poly(methyl methacrylate)(PMMA). The photosensitizer concentration of PQ was increased from 0.7 wt. % to 1.8 wt. %. The doping of ACMO component results in a higher diffraction efficiency and photosensitivity than a typical PQ/PMMA system. The enhanced performance of the material may stem from the ACMO molecules, which might open a new route for improving the holographic performance of the PQ/PMMA photopolymer.
关 键 词:Composite materials Diffraction efficiency MOLECULES Polymethyl methacrylate Volume holography
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