Photo-induced polymer holographic material mixed with nano-silicon dioxide and preparation method thereof
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A technology of nano-silica and photopolymers, which is applied in the field of optical holographic storage, can solve the problems of not being able to satisfy large refractive index modulation and high spatial stability at the same time
Inactive Publication Date: 2012-01-11
HENAN UNIVERSITY
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Problems solved by technology
In recent years, photopolymer materials have developed rapidly, but the existing photopolymer materials still cannot meet the requirements of large refractive index modulation and high dimensional stability at the same time.
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Embodiment 1
[0018] Embodiment 1: Prepare according to the above-mentioned specific preparation process, and finally the prepared photopolymer dry film component content is:
[0019] Polyvinyl alcohol: 47.133wt%
[0020] Acrylamide: 14.100wt%
[0021] N,N'-methylenebisacrylamide: 3.924wt%
[0022] Triethanolamine: 31.643wt%
[0023] Methylene blue: 0.076wt%
[0024] Nano silica particles: 3.124wt%
[0025] Such as figure 2 As shown, the obtained diffraction efficiency can reach 93%.
Embodiment 2
[0026] Embodiment 2: Prepare according to the above-mentioned specific preparation process, and finally the prepared photopolymer film component content is:
[0027] Polyvinyl alcohol: 47.562wt%
[0028] Acrylamide: 14.228wt%
[0029] N,N'-methylenebisacrylamide: 3.959wt%
[0030] Triethanolamine: 31.929wt%
[0031] Methylene blue: 0.077wt%
[0032] Nano silica particles: 2.254wt%
[0033] The diffraction efficiency obtained in this embodiment can reach 88%.
Embodiment 3
[0034] Embodiment 3: Prepare according to the above-mentioned specific preparation process, and finally the prepared photopolymer film component content is:
[0035] Polyvinyl alcohol: 46.632wt%
[0036] Acrylamide: 13.951wt%
[0037] N,N'-methylenebisacrylamide: 3.882wt%
[0038] Triethanolamine: 31.307wt%
[0039] Methylene blue: 0.0755wt%
[0040] Nano silica particles: 4.153wt%
[0041] The diffraction efficiency obtained in this embodiment can reach 86%.
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Abstract
The invention relates to a photo-induced polymer holographic material mixed with nano-silicon dioxide and a preparation method thereof. The photo-induced polymer holographic material comprises polyvinyl alcohol, acrylic amide, N,N'-methylenebisacrylamide, methylene blue, triethanol amine and nano-silicon dioxide. The preparation process comprises the following steps: firstly, adding the polyvinylalcohol to deionized water and obtaining a polyvinyl alcohol solvent; secondly, dissolving the N,N'-methylenebisacrylamide in the deionized water, respectively adding nano-silicon dioxide granules and the acrylic amide and uniformly stirring; thirdly, adding the triethanol amine to the solvent obtained from the second step and fully stirring; fourthly, simultaneously adding the methylene blue andthe mixed solvent prepared from the third step to the polyvinyl alcohol solvent and obtaining a photopolymer collosol; and fifthly, pouring the collosol on a glass substrate and obtaining a photopolymer dry film after the water is volatized. The materials simultaneously have great refractive index modulation degree and space stability, have the diffraction efficiency reaching 93 percent and are suitable for photo-holographic storage.
Description
technical field [0001] The invention relates to optical holographic storage, in particular to a photopolymer holographic recording material doped with water-soluble nano-silica particles modified by amino groups and a preparation method thereof. Background technique [0002] Compared with traditional storage methods such as magnetic storage and magneto-optical storage, high-density digital holographic storage has the advantages of high redundancy, high storage density, large storage capacity, high data transmission rate, short access time, and parallel addressing. , and has become a research hotspot in the field of mass information storage technology. Since 2000, world-renowned companies such as InPhase of the United States, Optware of Japan, Polight of the United Kingdom and other scientific research institutions have been engaged in the research of digital holographic storage technology. It can be seen from the latest research results that the main reason affecting the pr...
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