标题: 以PQ衍生物为光敏感剂的感光全像高分子材料
Fabrication and Characterization of poly (methyl methacrylate) photopolymer doped with quinone-based photosensitive molecules for volume holographic recording
作者: 陈柏霖
Po-lin Chen
黄华宗
Wha-TzongWhang
材料科学与工程学系
关键字: 全像术;动态范围;绕射效率;感光高分子;Holography;dynamic range;diffraction difficiency;photopolymer
公开日期: 2004
摘要: 本论文尝试研制以PQ衍生物为光敏感剂的高光学品质感光高分子材料,并探讨其中的反应机制、特性及其在全像光学资讯储存的特性研究,以利于将其应用至全像资讯储存系统中。

□在高分子材料制程方面:首先,制作出合适于填充样品玻璃容器,再以染料PQ(9,10-phenanthrenequinone),其不同的衍生物:多一个甲基和异丙基的PQ1(1-isopropyl-7-methyl-9,10-phenanthrenequinone)、多一个硝基的PQ2(2-nitrophenanthrenequinone)、多一个苯环的PQ3 (11,12-Dihydrochrysene-11,12-Dione)及已经去除水分的起始剂AIBN
(Azobisisobutyronitrile)分别掺入纯化过的MMA(methyl methacrylate)单体中,装入事先制作完成的容器内。其反应条件已经藉着调控反应温度、时间和改良制作容器的制程被最佳化,使得良好光学品质的 PQ衍生物/PMMA感光高分子材料得以生成。

在材料的反应机制分析方面:以照光时PQ与残存单体呈现一对一反应的理论为出发点,经由UV和GC-MASS的分析,分别得到不同PQ衍生物的感光范围与PQ衍生物与单体MMA反应可能形成的加成物,并且为PQ1∼3/PMMA的光学储存机制建立合理的模型。

在全像光学资讯储存特性研究方面,经由绕射效率和记录动态范围量测的结果显示经由引入带有不同官能基团的感光材料,会有不同的响应时间;而以不同的记录能量实现位移多工的全像储存,也会有不同的纪录动态范围。针对这些结果,对PQ衍生物在化学结构和光学行为上可能有的相关性,做进一步的讨论。
In this thesis, we investigate several novel poly(methyl methacrylate)(PMMA) photopolymers doped with different quinone-based molecules for volume holographic recording .Chemical analyses are performed to study on physical mechanism of holographic recording .In addition , the materials are characterized experimentally for holographic data storage application.

In material fabrication, four different quinine-based molecules: 9,10-phenanthrenequinone(PQ),1-isopropyl–7–methyl –9,10–phenanthrenequinone
(PQ1), 2-nitro phenanthrenequinone (PQ2), 11,12 – Dihydrochrysene - 11,12- Dione (PQ3,) are chosen. One of them and thermal -initiator azobisisobutyronitrile ( AIBN ) are dissolved into the purified methyl methacrylate( MMA)solution . By controlling synthesis temperature, time , processes for preparing glass cell, the solution can be transformed into well-polymerized bulk with dimensions of 10cm x 10cm and thickness of 2mm.

In chemical analyses, we perform mass spectrum experiments of those samples after optical exposure with 514nm laser light by using UV and GC-MASS. The results show that all of the different quinine- based PQ molecules can be reacted with residual monomer in the form of one-by-one compound, which are similar with the previous reported works. It indicates that we can reasonably assume the physical mechanism of holographic recording in our samples is similar with the previous reported results.

In holographic characterizations, we measure the temporal response of diffraction efficiency of hologram recorded in each sample. By using typical two-wave-mixing recording setup .In addition ,the material M/# of each sample is measured by recording multiple holograms with peristrophical multiplexing technique. The results show that inducing different functional groups, we obtain distinct diffraction efficiency ,response time(sensitivity) and M/#(dynamic range).According to these results ,we try to find out the relevance between the chemical structure and holographic behavior of these different samples, which provide us a trend method to optimize these quinone-based molecules doped PMMA photo polymer for volume holographic data storage.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009218550
http://hdl.handle.net/11536/75057
显示于类别:Thesis


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