DOI QR코드

DOI QR Code

Effect of Modification of SeO2/Acrylamide Ratios on Diffraction Efficiencies in PVA/AA Photopolymer Films

  • Kim, Dae-Heum (Chemical Engineering Department, Kwangwoon University) ;
  • Lim, Ji-Yun (Chemical Engineering Department, Kwangwoon University) ;
  • Nam, Seung-Woong (Chemical Engineering Department, Kwangwoon University) ;
  • Chung, Dae-Won (Polymer Engineering Department, Suwon University)
  • Received : 2007.09.07
  • Published : 2007.12.25

Abstract

The highest diffraction efficiency(DE) value after illumination and post-curing of photopolymer films were obtained at the $SeO_2$/Acrylamide(AA) Ratios of AA 3.0 g, $SeO_2$ 1.0g and the DE's were stable values of over 90%. By the addition of $SeO_2$, the maximum DE at the initial stage of illumination was reached at 300 seconds, which suggests $SeO_2$ slows down the photopolymerization of AA, which enhances the maximum DE value by giving more migration time. DE variation curve for the optimum composition during extended-time illumination of 9,000 seconds resembles a sine curve due to the combination of the monomer diffusion and the photopolymerization, and the photopolymer film expanded by about 8% after photopolymerization due to monomer migration.

Keywords

References

  1. YAO Huawen, HUANG mingju, CHEN Zhongyu, HOU Lisong, and GAN Fuxi, 'Acrylamide-based photopolymer used for holographic recording,' Proc. of SPIE, vol. 5060, pp. 199-202, 2003 https://doi.org/10.1117/12.510390
  2. S. Blaya, L. Carretero, R. Mallavia, et al., 'Optimization of an acrylamide-based dry film used for holographic recording,' Appl. Opt., vol. 37, pp. 7604-7610, 1998 https://doi.org/10.1364/AO.37.007604
  3. Cristian Neipp, Sergi Gallego, Manuel Ortuno, Andres Marquez, et al., 'Characterization of a PVA/acrylamide photopolymer. Influence of a cross-linking monomer in the final characteristics of the hologram,' Optics Communications, vol. 224, pp. 27-34, 2003 https://doi.org/10.1016/S0030-4018(03)01719-X
  4. K. Curtis and K. Psaltis, 'Recording of multiple holograms in photopolymer film,' Appl. Opt., vol. 31, pp. 7425-7428, 1992 https://doi.org/10.1364/AO.31.007425
  5. U. S. Rhee, H. J. Caulfield, J. Shamir, C. S. Vikram, and M. M. Mirsalehi, 'Characteristics of DuPont photopolymer for angularly multiplexing page-oriented holographic memories,' Opt. Eng., vol. 32, no. 8, pp. 1839- 1847, 1993 https://doi.org/10.1117/12.145348
  6. A. Pu, K. Curtis, and D. Psaltis, 'Exposure schedule for multiplexing holograms in photopolymer films,' Opt. Eng., vol. 35, no. 10, pp. 2824-2829, 1996 https://doi.org/10.1117/1.600967
  7. Jiyoung Park and Eunkyoung Kim, Journal of Korean Society for Imaging Science & Technology, vol. 8, no. 1, pp. 22-28, 2002
  8. Cristian Neipp, Sergi Gallego, Manuel Ortuno, and Andres Marquez, et al., 'Characterization of a PVA/ acrylamide photopolymer. Influence of a cross-linking monomer in the final characteristics of the hologram,' Optics Communications, vol. 224, pp. 27-34, 2003 https://doi.org/10.1016/S0030-4018(03)01719-X
  9. S. A. Zager and A. M. Weber, 'Display holograms in DuPont's Omnidexff films,' Practical Holography V, Proc. SPIE, vol. 1461, pp. 58-67, 1991 https://doi.org/10.1117/12.44711
  10. C. Garcia, I. Pascual, A. Costela, I. Garcia-Moreno, C. Gomez, et al., 'Hologram recording in polyvinylalcohol/ acrylamide photopolymers by means of pulsed laser exposure,' Appl. Opt., vol. 41, pp. 2613-2620, 2002 https://doi.org/10.1364/AO.41.002613
  11. Dae Won Chung, Jung Pyo Kim, Daeheum Kim, and Jiyun Lim, 'Synthesis of Multifunctional Epoxy Monomers and their Potential Application in the Production of Holographic Photopolymers,' Journal of Industrial and Engineering Chemistry, vol. 12, no. 5, pp. 783- 789, 2006
  12. S. Blaya, P. Acebal, L. Carretero and A. Fimia, 'Pyrromethene-HEMA-based photopolymeri-zable holographic recording material,' Optics Communications, vol. 228, pp. 55-61, 2003 https://doi.org/10.1016/j.optcom.2003.09.068
  13. Weidenbruck, Gabriele, 'Radial photoinitiators for holographic data storage,' Ip.com Journal, vol. 3, no. 7, pp. 29-33, 2003
  14. Sheridan, Jon T., O'Neill, Feidhlim T., Kelly, and John V., 'Photopolymer holographic materials: the non-local diffusion model,' Trends in Optics and Photonics, vol. 87, pp. 206-212, 2003
  15. Huiguang Kow, Wenfang Shi, Lin Tang, and Hai Ming, 'Recording performance of holographic diffraction gratings in dry films containing hyperbranched polyisophthalesters as polymeric binders,' Applied Optics, vol. 42, no. [19] pp. 3944-3949, 2003 https://doi.org/10.1364/AO.42.003944
  16. H. G. Kou, A. Asif, and W. F. Shi, 'Photopolymerizable acrylated hyperbranched polyisophthalesters used for photorefractive materials,' Eur. Polym. J., vol. 38, pp. 1931-1936, 2002 https://doi.org/10.1016/S0014-3057(02)00105-2
  17. C. Garcia, I. Pascual, A. Costela, I. Garcia-Moreno, C. Gomez, et al., 'Hologram recording in polyvinylalcohol/ acrylamide photopolymers by means of pulsed laser exposure,' Appl. Opt., vol. 41, pp. 2613-2620, 2002 https://doi.org/10.1364/AO.41.002613
  18. G. J. Steckman, V. Shelkovnikov, V. Berezhnaya, T. Gerasimova, et al., 'Holographic recording in a photopolymer by optically induced detachment of chromophores,' Opt. Lett., vol. 25, pp. 607-609, 2000 https://doi.org/10.1364/OL.25.000607
  19. S. Blaya, L. Carretero, R. F. Madrigal, and A. Fimia, 'Theoretical model of holographic grating formation in photopolymerizable dry films in slanted geometry,' Opt. Communications, vol. 173, pp. 423-433, 2000 https://doi.org/10.1016/S0030-4018(99)00652-5
  20. Sun Joo Jang, Jong Hwa Park, Chul Ho Son, and Hong Bay Chung, 'The Properties of Photoinduced Birefringence in Charcogenide Thin Films by the Electric Field Effects,' Journal of KIEEME, vol. 13, no. 9, pp 781- 785, 2000
  21. Jin Young Chun, Cheol Ho Yeo, Hyun Yong Lee, and Hong Bay Chung, 'Polarization Holographic Grating Formation and Diffraction Efficiency Measurement in Amorphous Chalcogenide Thin Films,' Journal of KIEEME, vol. 0, no. 0, pp. 89-92, 1998
  22. Daeheum Kim, Jaewook Ko, Doyoung Yoon, and Younghwan Kim, 'Effects of Modifying PVA/AA Photopolymer Film with $SeO_{2}$ Nano Crystals on Photostorage Stabilities and Diffraction efficiencies,' Southeast Asia Regional Symposium on Chemical Engineering (RSCE2005), 6-15, Dec., 2005
  23. Daeheum Kim, Jaewook Ko, and Younghwan Kim, 'A Study of Photostorage Characteristics and Stabilities of $SeO_{2}$ Crystal Composite Photopolymer film,' Journal of The Society of Information Storage Systems, 21, 112, 2005
  24. Daeheum Kim, Younghwan Kim, Seungwoong Nam, and Jiyun Lim, 'Effects of Modifying PVA/AA Photopolymer Film with $SeO_{2}$ Crystals on Diffraction efficiencies for Holographic Recording,' Journal of Industrial and Engineering Chemistry, vol. 12, no. 5, pp. 762-768, 2006

Cited by

  1. Diffraction Efficiency Change in PVA/AA Photopolymer Films by SeO2and TiO2Nano Particle Addition vol.21, pp.2, 2010, https://doi.org/10.3807/KJOP.2010.21.2.082
  2. Study of Diffraction Efficiency Values for Photopolymer Films Added TiO2Nanoparticles vol.20, pp.2, 2009, https://doi.org/10.3807/HKH.2009.20.2.123
  3. Study on the optimization of cationic ring opening polymerization of silicone-based epoxy monomers for holographic photopolymers vol.17, pp.9, 2009, https://doi.org/10.1007/BF03218924
  4. Diffraction Efficiency Improvement of PVA/AA/SeO2Photopolymer with Various Film Thickness and Eosin Y Contents vol.20, pp.4, 2009, https://doi.org/10.3807/KJOP.2009.20.4.230