Effect of KI Concentration in Correcting Tank on Optical Properties of PVA Polarizing Film
Abstract
:1. Introduction
2. Materials and Methods
2.1. Materials
2.2. Preparation of PVA Membrane
2.3. Preparation of PVA Polarizing Film
2.4. Characterization
3. Results and Discussion
3.1. Characterization and Analysis of Chromaticity
3.2. Characterization and Analysis of Dichroic Species in PVA Polarizing Film
3.3. Characterization and Analysis of Transmittance and Polarization
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Xie, M.; Qin, W.; Kong, X.; Liu, J.; Qin, F. 70-3: Flexible Reflective Liquid Crystal Display Technology. In SID Symposium Digest of Technical Papers; Wiley Online Library: Hoboken, NJ, USA, 2021; pp. 1048–1051. [Google Scholar]
- Yeh, P. Optics of liquid crystal displays. In Proceedings of the Conference on Lasers and Electro-Optics-Pacific Rim, Seoul, Korea, 26–31 August 2007; p. 1. [Google Scholar]
- Takatoh, K.; Sakamoto, M.; Hasegawa, R.; Koden, M.; Itoh, N.; Hasegawa, M. Alignment Technology and Applications of Liquid Crystal Devices; CRC Press: Boca Raton, FL, USA, 2005. [Google Scholar]
- Fujimura, Y.; Kamijo, T.; Yoshimi, H. Improvement of optical films for high-performance LCDs. In Liquid Crystal Materials, Devices, and Applications IX; SPIE: Bellingham, WA, USA, 2003; pp. 96–105. [Google Scholar]
- Soyeon, J.; Seong-Geum, O. Antiacne effects of PVA/ZnO composite nanofibers crosslinked by citric acid for facial sheet masks. Int. J. Polym. Sci. 2022, 2022, 1–9. [Google Scholar]
- Kalyani, P.; Muthupandeeswari, T. Investigation on the altered properties of PVA filled magnesium oxide composite (PVA@xMgO) thin films. Polym. Bull. 2022, 124, 1–20. [Google Scholar] [CrossRef]
- Awad, S.A.; Khalaf, E.M. Investigation of photodegradation preventing of polyvinyl alcohol/nanoclay composites. J. Polym. Environ. 2019, 27, 1908–1917. [Google Scholar] [CrossRef]
- Awad, S.A. Enhancing the thermal and mechanical characteristics of polyvinyl alcohol (PVA)-Hemp protein particles (HPP) composites. Int. Polym. Process. J. Polym. Process. Soc. 2021, 36, 137–143. [Google Scholar] [CrossRef]
- Zhang, R.; Zhang, Q.; Ji, Y.; Su, F.; Meng, L.; Qi, Z.; Lin, Y.; Li, X.; Chen, X.; Lv, F. Stretch-induced complexation reaction between poly (vinyl alcohol) and iodine: An in situ synchrotron radiation small-and wide-angle X-ray scattering study. Soft Matter 2018, 14, 2535–2546. [Google Scholar] [CrossRef]
- Miyasaka, K. PVA-Iodine complexes: Formation, structure, and properties. In Structure in Polymers with Special Properties; Springer: Berlin/Heidelberg, Germany, 1993; pp. 91–129. [Google Scholar]
- Herrmann, W.O.; Haehnel, W. Über den oly-vinylalkohol. Ber. Dtsch. Chem. Ges. 1927, 60, 1658–1663. [Google Scholar] [CrossRef]
- Staudinger, H.; Frey, K.; Starck, W. Hochmolekulare Verbindungen, 9. Mitteilung: Über Poly-vinylacetat und Poly-vinylalkohol. Ber. Dtsch. Chem. Ges. 1927, 60, 1782–1792. [Google Scholar] [CrossRef]
- Rundle, R.; Baldwin, R. The configuration of starch and the starch—Iodine complex. I. The dichroism of flow of starch—Iodine solutions 1. J. Am. Chem. Soc. 1943, 65, 554–558. [Google Scholar] [CrossRef]
- Rundle, R.; French, D. The Configuration of Starch and the Starch—Iodine Complex. II. Optical Properties of Crystalline Starch Fractions 1. J. Am. Chem. Soc. 1943, 65, 558–561. [Google Scholar] [CrossRef]
- Zwick, M. Poly (vinyl alcohol)–iodine complexes. J. Appl. Polym. Sci. 1965, 9, 2393–2424. [Google Scholar] [CrossRef]
- Inagaki, F.; Harada, I.; Shimanouchi, T.; Tasumi, M. The resonance Raman spectrum of the poly (vinyl alcohol)-iodine complex. Bull. Chem. Soc. Jpn. 1972, 45, 3384–3388. [Google Scholar] [CrossRef] [Green Version]
- Rundle, R.; Foster, J.F.; Baldwin, R. On the nature of the starch—Iodine complex 1. J. Am. Chem. Soc. 1944, 66, 2116–2120. [Google Scholar] [CrossRef] [Green Version]
- Tebelev, L.; Mikul’skii, G.; Korchagina, Y.P.; Glikman, S. Spectrophotometric Analysis of the Reaction of Iodine with Solutions of Polyvinyl alcohol. Polym. Sci. USSR 1965, 7, 132–138. [Google Scholar] [CrossRef]
- Tashiro, K.; Takahama, T.; Wang, M.F. X-ray study of Poly(vinyl Alcohol)-Iodine complex prepared from the dilute iodine solution as a hint to know the inner structure of polarizer. Polymer 2021, 233, 124180. [Google Scholar] [CrossRef]
- Man, H.H.; Lyoo, W.S. Preparation of syndiotacticity-rich high molecular weight poly(vinyl alcohol)/iodine polarizing film with high water resistance. J. Appl. Polym. Sci. 2010, 115, 917–922. [Google Scholar]
- Lyoo, W.; Yeum, J.; Ghim, H.; Park, J.; Lee, S.; Kim, J.; Shin, D.; Lee, J. Effect of the molecular weight of poly (vinyl alcohol) on the water stability of a syndiotactic poly (vinyl alcohol)/iodine complex film. Colloid Polym. Sci. 2003, 281, 416–422. [Google Scholar] [CrossRef]
- Ohishi, K.; Itadani, T.; Hayashi, T.; Nakai, T.; Horii, F. Role of boric acid in the formation of poly (vinyl alcohol)–iodine complexes in undrawn films. Polymer 2010, 51, 687–693. [Google Scholar] [CrossRef]
- Ghim, H.D.; Kim, J.P.; Kwon, I.C.; Lee, C.J.; Lee, J.; Kim, S.S.; Lee, S.M.; Yoon, W.S.; Lyoo, W.S. Effect of iodine absorption on the characteristics of syndiotacticity-rich high molecular weight poly (vinyl alcohol) microfibril. J. Appl. Polym. Sci. 2003, 87, 1519–1524. [Google Scholar] [CrossRef]
- Hayashi, S.; Nakano, C.; Motoyama, T. The reaction of iodine with partially saponified polyvinyl acetate. Kobunshi Kagaku 1963, 20, 303–311. [Google Scholar] [CrossRef]
- Pritchard, J.; Akintola, D. Complexation of polyvinyl alcohol with iodine: Analytical precision and mechanism. Talanta 1972, 19, 877–888. [Google Scholar] [CrossRef]
- Saharin, S.M.; Takahama, T.; Nonogaki, S.; Saito, K.; Tashiro, K. Effect of OH segmental length on the iodine complex formation of ethylene–vinyl alcohol random copolymers. Macromolecules 2015, 48, 8867–8876. [Google Scholar] [CrossRef]
- Miyazaki, T.; Katayama, S.; Funai, E.; Tsuji, Y.; Sakurai, S. Role of adsorbed iodine into poly (vinyl alcohol) films drawn in KI/I2 solution. Polymer 2005, 46, 7436–7442. [Google Scholar] [CrossRef]
- Zhang, Q.; Zhang, R.; Meng, L.; Ji, Y.; Su, F.; Lin, Y.; Li, X.; Chen, X.; Lv, F.; Li, L. Stretch-induced structural evolution of poly (vinyl alcohol) film in water at different temperatures: An in-situ synchrotron radiation small-and wide-angle X-ray scattering study. Polymer 2018, 142, 233–243. [Google Scholar] [CrossRef]
- Liu, Y.; Yin, L.; Zhao, H.; Song, G.; Tang, F.; Wang, L.; Shao, H.; Zhang, Y. Strain-induced structural evolution during drawing of poly (ethylene terephthalate) fiber at different temperatures by in situ synchrotron SAXS and WAXD. Polymer 2017, 119, 185–194. [Google Scholar] [CrossRef]
- Matsuzawa, S.; Yamaura, K.; Noguchi, H. Effect of syndiotacticity on the reaction of poly (vinyl alcohol) s with iodine. Die Makromol. Chem. Macromol. Chem. Phys. 1974, 175, 31–41. [Google Scholar] [CrossRef]
- Lyoo, W.-S.; Yeum, J.-H.; Choi, J.-H.; Ji, B.-C.; Yoon, W.-S.; Noh, T.-H.; Ghim, H.-D.; Kim, J.-P. Studies on the syndiotactic poly (vinyl alcohol) polarizing film-Iodine desorption behavior of high molecular weight syndiotactic poly (vinyl alcohol)/iodine complex film. Polymer 2001, 25, 115–121. [Google Scholar]
- Choi, J.H.; Lyoo, W.S.; Ko, S.W. Effect of stereoregularity on the properties of syndiotactic-rich ultrahigh molecular weight poly (vinyl alcohol)/dimethyl sulfoxide/water gel. Macromol. Chem. Phys. 1999, 200, 1421–1427. [Google Scholar] [CrossRef]
- Lyoo, W.S.; Yeum, J.H.; Choi, J.H.; Ji, B.C.; Do Ghim, H.; Kim, J.P.; Noh, T.H.; Yoon, W.J. A method to determine iodine desorption of high molecular weight syndiotactic poly (vinyl alcohol)/iodine complex film. Polym. Test. 2001, 20, 503–507. [Google Scholar] [CrossRef]
- Imai, K.; Matsumoto, M. The effect of stereoregularity on the polyvinyl alcohol–iodine reaction. J. Polym. Sci. 1961, 55, 335–342. [Google Scholar] [CrossRef]
- Sengupta, A.; Holtz, M.; Quitevis, E.L. Temperature-dependent resonance Raman study of iodine-doped poly (vinyl alcohol) films. Chem. Phys. Lett. 1996, 263, 25–32. [Google Scholar] [CrossRef]
- Sengupta, A.; Quitevis, E.L.; Holtz, M.W. Effect of high pressure on vibrational modes of polyiodides in poly (vinyl alcohol) films. J. Phys. Chem. B 1997, 101, 11092–11098. [Google Scholar] [CrossRef]
- Heyde, M.; Rimai, L.; Kilponen, R.; Gill, D. Resonance-enhanced Raman spectra of iodine complexes with amylose and poly (vinyl alcohol), and of some iodine-containing trihalides. J. Am. Chem. Soc. 1972, 94, 5222–5227. [Google Scholar] [CrossRef]
- Choi, Y.S.; Miyasaka, K. Structure and properties of poly (vinyl alcohol)–iodine complex formed in the crystal phase of poly (vinyl alcohol) films. J. Appl. Polym. Sci. 1994, 51, 613–618. [Google Scholar] [CrossRef]
- Mokhnach, V.; Zueva, I. A spectrophotometric investigation of aqueous solutions of iodopolyvinyl alcohol. In Doklady Akademii Nauk; Russian Academy of Sciences: Saint Petersburg, Russia, 1961; pp. 832–835. [Google Scholar]
- Oishi, Y.; Miyasaka, K. Formation of poly (vinyl alcohol)-iodine complex in water swollen films on extension. Polym. J. 1987, 19, 331–336. [Google Scholar] [CrossRef] [Green Version]
- Hayashi, S.; Hirai, T.; Hojo, N.; Sugeta, H.; Kyogoku, Y. Blue complex formation of poly (vinyl acetate) with iodine-iodide. J. Polym. Sci. Polym. Lett. Ed. 1982, 20, 69–73. [Google Scholar] [CrossRef]
- Choi, Y.-S.; Oishi, Y.; Miyasaka, K. Change of poly (vinyl alcohol) crystal lattice by iodine sorption. Polym. J. 1990, 22, 601–608. [Google Scholar] [CrossRef] [Green Version]
- Sakuramachi, H.; Choi, Y.-S.; Miyasaka, K. Poly (vinyl alcohol)-iodine complex in poly (vinyl alcohol) films soaked at high iodine concentrations. Polym. J. 1990, 22, 638–642. [Google Scholar] [CrossRef] [Green Version]
- Takamiya, H.; Tanahashi, Y.; Matsuyama, T.; Tanigami, T.; Yamaura, K.; Matsuzawa, S. On the poly (vinyl alcohol)–iodine complexes. J. Appl. Polym. Sci. 1993, 50, 1807–1813. [Google Scholar] [CrossRef]
- Woo, J.Y.; Shin, E.J.; Lee, Y.H. Effect of boric acid treatment on the crystallinity and drawability of poly (vinyl alcohol)–iodine complex films. Polym. Bull. 2010, 65, 169–180. [Google Scholar] [CrossRef]
- Land, E.H. Treatment of Polarizing Polyvinyl Alcohol-Iodine Sorption Complex Image with Boric Acid. U.S. Patent 2,445,581, 20 July 1948. [Google Scholar]
- Song, Y.X.; Zhang, S.M.; Kang, J.; Chen, J.Y.; Cao, Y. Water absorption dependence of the formation of poly(vinyl alcohol)-iodine complexes for poly(vinyl alcohol) films. RSC Adv. 2021, 11, 28785–28796. [Google Scholar] [CrossRef]
- Tashiro, K.; Kitai, H.; Saharin, S.M.; Shimazu, A.; Itou, T. Quantitative crystal structure analysis of poly (vinyl alcohol)–iodine complexes on the basis of 2D X-ray diffraction, Raman spectra, and computer simulation techniques. Macromolecules 2015, 48, 2138–2148. [Google Scholar] [CrossRef]
Tanks | w (H3BO3) % | w (I2) % | w (KI) % | w (ZnCl2)% |
---|---|---|---|---|
Dyeing | 2.80 | 0.11 | 0.92 | 0 |
Stretching | 3.60 | 0 | 2.10 | 0 |
Correcting | 2.50 | 0 | 1.0/1.5/2.0/2.5/3.0 | 0.35 |
w (KI)% | P/% | |||
---|---|---|---|---|
1.0 | 40.052 | 24.639 | 0.057 | 99.769 |
1.5 | 39.866 | 26.769 | 0.040 | 99.851 |
2.0 | 42.075 | 27.023 | 0.030 | 99.889 |
2.5 | 41.805 | 29.589 | 0.054 | 99.818 |
3.0 | 42.256 | 30.528 | 0.033 | 99.892 |
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Yang, Y.; Zheng, Z.; Lin, J.; Zhou, L.; Chen, G. Effect of KI Concentration in Correcting Tank on Optical Properties of PVA Polarizing Film. Polymers 2022, 14, 1413. https://doi.org/10.3390/polym14071413
Yang Y, Zheng Z, Lin J, Zhou L, Chen G. Effect of KI Concentration in Correcting Tank on Optical Properties of PVA Polarizing Film. Polymers. 2022; 14(7):1413. https://doi.org/10.3390/polym14071413
Chicago/Turabian StyleYang, Yang, Ziyuan Zheng, Jun Lin, Lintao Zhou, and Guohua Chen. 2022. "Effect of KI Concentration in Correcting Tank on Optical Properties of PVA Polarizing Film" Polymers 14, no. 7: 1413. https://doi.org/10.3390/polym14071413
APA StyleYang, Y., Zheng, Z., Lin, J., Zhou, L., & Chen, G. (2022). Effect of KI Concentration in Correcting Tank on Optical Properties of PVA Polarizing Film. Polymers, 14(7), 1413. https://doi.org/10.3390/polym14071413