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Erschienen in: Optical and Quantum Electronics 8/2020

01.08.2020

Optical analysis of methyl violet thin films/polymeric substrate for flexible organic technology

verfasst von: A. Abdel-Galil, M. A. Assiri, I. S. Yahia

Erschienen in: Optical and Quantum Electronics | Ausgabe 8/2020

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Abstract

In this research, the spin coating as a low-cost non-vacuum preparation technique was used to deposit high-quality thin films of Methyl Violet-10B (MV-10B) with different thicknesses on flexible polymeric substrates. X-ray diffraction technique was applied to distinguish the crystal structure of MV-10B films with different thicknesses. The X-ray diffraction patterns revealed the amorphous nature of all MV-10B films on the polymeric substrates. The optical band gap (direct and indirect) was measured using Tauc's relationship with the various thicknesses of MV-10B films. The linear optical parameters such as refractive index, dielectric constant, and loss were investigated with the difference in thickness of these films. The dispersion parameters of the studied films were estimated according to the single oscillator model provided by Wemple and Di-Domenico. As regards the film thickness, the spectral distribution of linear and nonlinear susceptibilities of MV-10B films was studied. The optical limiting behavior of MV-10B films on the polymeric substrates also has been examined to know how to control the laser beam power as a function of the film thickness. Methyl violet 10B thin films/polymeric substrate for flexible organic technology and Laser power attenuation, and flexible CUT-OFF laser filters in optoelectronic devices.

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Literatur
Zurück zum Zitat Ahmed, R.M., Saif, M.: Optical properties of rhodamine B dye doped in transparent polymers for sensor application. Chin. J. Phys. 51, 511–521 (2013) Ahmed, R.M., Saif, M.: Optical properties of rhodamine B dye doped in transparent polymers for sensor application. Chin. J. Phys. 51, 511–521 (2013)
Zurück zum Zitat Bosshard, C., Sutter, K., et al.: Organic Nonlinear Optical Materials. Gordon and Breach Publishers, Pennsylvania (1995) Bosshard, C., Sutter, K., et al.: Organic Nonlinear Optical Materials. Gordon and Breach Publishers, Pennsylvania (1995)
Zurück zum Zitat Chang, Y., Lau, T.-K., Chow, P.C.Y., Wu, N., Su, D., Zhang, W., Meng, H., Ma, C., Liu, T., Li, K., Zou, X., Wong, K.S., Lu, X., Yan, H., Zhan, C.: A 16.4% efficiency organic photovoltaic cell enabled using two donor polymers with their sidechains oriented differently by a ternary strategy. J. Mater. Chem. A 8, 3676–3685 (2020). https://doi.org/10.1039/c9ta13293gCrossRef Chang, Y., Lau, T.-K., Chow, P.C.Y., Wu, N., Su, D., Zhang, W., Meng, H., Ma, C., Liu, T., Li, K., Zou, X., Wong, K.S., Lu, X., Yan, H., Zhan, C.: A 16.4% efficiency organic photovoltaic cell enabled using two donor polymers with their sidechains oriented differently by a ternary strategy. J. Mater. Chem. A 8, 3676–3685 (2020). https://​doi.​org/​10.​1039/​c9ta13293gCrossRef
Zurück zum Zitat El-Ouazzani, H., Dabos-Seignon, S., Gindre, D., Iliopoulos, K., Todorova, M., Bakalska, R., Penchev, P., Sotirov, S., Kolev, T., Serbezov, V., Arbaoui, A., Bakasseand, M., Sahraoui, B.: Novel styrylquinolinium dye thin films deposited by pulsed laser deposition for nonlinear optical applications. J. Phys. Chem. C 116, 7144–7152 (2012). https://doi.org/10.1021/jp2118218CrossRef El-Ouazzani, H., Dabos-Seignon, S., Gindre, D., Iliopoulos, K., Todorova, M., Bakalska, R., Penchev, P., Sotirov, S., Kolev, T., Serbezov, V., Arbaoui, A., Bakasseand, M., Sahraoui, B.: Novel styrylquinolinium dye thin films deposited by pulsed laser deposition for nonlinear optical applications. J. Phys. Chem. C 116, 7144–7152 (2012). https://​doi.​org/​10.​1021/​jp2118218CrossRef
Zurück zum Zitat Farag, A.A.M., Yahia, I.S.: Structural, absorption and optical dispersion characteristics of rhodamine B thin films prepared by drop casting technique. Opt. Commun. 283, 4310–4317 (2010)ADSCrossRef Farag, A.A.M., Yahia, I.S.: Structural, absorption and optical dispersion characteristics of rhodamine B thin films prepared by drop casting technique. Opt. Commun. 283, 4310–4317 (2010)ADSCrossRef
Zurück zum Zitat Frumar, M., Jedelsky, J., Frumarov, B., Wagner, T., Hrdlicka, M.: Optically and thermally induced changes of structure, linear and non-linear optical properties of chalcogenides thin films. J. Non-Cryst. Solids 326 & 327, 399–404 (2003)CrossRef Frumar, M., Jedelsky, J., Frumarov, B., Wagner, T., Hrdlicka, M.: Optically and thermally induced changes of structure, linear and non-linear optical properties of chalcogenides thin films. J. Non-Cryst. Solids 326 & 327, 399–404 (2003)CrossRef
Zurück zum Zitat Fukuda, M.: Optical Semiconductor Devices. Wiley, New York (1999) Fukuda, M.: Optical Semiconductor Devices. Wiley, New York (1999)
Zurück zum Zitat Gter, P. (ed.): Nonlinear Optical Effects and Materials. Springer, New York (2000) Gter, P. (ed.): Nonlinear Optical Effects and Materials. Springer, New York (2000)
Zurück zum Zitat Kumaresan, S., Ahamed, M.B.: Nonlinear optical properties of pyronin b dye by z-scan technique using q-switched pulsed Nd: YAG laser. Int. J. Chem. Tech. Res. 8, 1163–1167 (2015) Kumaresan, S., Ahamed, M.B.: Nonlinear optical properties of pyronin b dye by z-scan technique using q-switched pulsed Nd: YAG laser. Int. J. Chem. Tech. Res. 8, 1163–1167 (2015)
Zurück zum Zitat Liu, J., Jiang, L., Shi, J., Li, C., Shi, Y., Tan, J., Li, H., Jiang, H., Yuanyuan, Hu, Liu, X., Junsheng, Yu, Wei, Z., Jiang, L., Wenping, Hu: Relieving the photosensitivity of organic field-effect transistors. Adv. Mater. 32, 1906122 (2020b)CrossRef Liu, J., Jiang, L., Shi, J., Li, C., Shi, Y., Tan, J., Li, H., Jiang, H., Yuanyuan, Hu, Liu, X., Junsheng, Yu, Wei, Z., Jiang, L., Wenping, Hu: Relieving the photosensitivity of organic field-effect transistors. Adv. Mater. 32, 1906122 (2020b)CrossRef
Zurück zum Zitat Nasu, H., Mackenzie, J.D.: Nonlinear optical properties of glasses and glass- or gel-based composites. Opt. Eng. 26(2), 102–106 (1987)ADSCrossRef Nasu, H., Mackenzie, J.D.: Nonlinear optical properties of glasses and glass- or gel-based composites. Opt. Eng. 26(2), 102–106 (1987)ADSCrossRef
Zurück zum Zitat Nasu, H., Matsuoka, J.: KanichiKamiya, Second- and third-order optical non-linearity of homogeneous glasses. J. Non-Cryst. Solids 178, 23–30 (1994)ADSCrossRef Nasu, H., Matsuoka, J.: KanichiKamiya, Second- and third-order optical non-linearity of homogeneous glasses. J. Non-Cryst. Solids 178, 23–30 (1994)ADSCrossRef
Zurück zum Zitat Smith, W.L.: in M.J. Weber (Ed.), Handbook of Laser Science and Technology, vol. 3, part 1, p.259, Chemical Rubber Co., Boca Raton (1986). Smith, W.L.: in M.J. Weber (Ed.), Handbook of Laser Science and Technology, vol. 3, part 1, p.259, Chemical Rubber Co., Boca Raton (1986).
Zurück zum Zitat Tauc, J., Menth, A.: States in the gap. J. Non-Cryst. Solids 8–10, 569–585 (1972)ADSCrossRef Tauc, J., Menth, A.: States in the gap. J. Non-Cryst. Solids 8–10, 569–585 (1972)ADSCrossRef
Zurück zum Zitat Ticha, H., Tichy, L.: Semiempirical relation between non-linear susceptibility (refractive index), linear refractive index and optical gap and its application to amorphous chalcogenides. J. Optoelectron. Adv. Mater. 4(2), 381–386 (2002) Ticha, H., Tichy, L.: Semiempirical relation between non-linear susceptibility (refractive index), linear refractive index and optical gap and its application to amorphous chalcogenides. J. Optoelectron. Adv. Mater. 4(2), 381–386 (2002)
Zurück zum Zitat Wemple, S.H., DiDomenico Jr., M.: Behavior of the electronic dielectric constant in covalent and ionic materials. Phys. Rev. B 3(11), 1338 (1971)ADSCrossRef Wemple, S.H., DiDomenico Jr., M.: Behavior of the electronic dielectric constant in covalent and ionic materials. Phys. Rev. B 3(11), 1338 (1971)ADSCrossRef
Zurück zum Zitat Wu, Z.-L., Qi, Y.-N., Yin, X.-J., Yang, X., Chenc, C.-M., Yu, J.-Y., Yu, J.-C., Lin, Y.-M., Hui, F., Liu, P.-L., Liang, Y.-X., Zhang, Y., Zhao, M.-S.: Polymer-based device fabrication and applications using direct laser writing technology. Polymers 11, 553 (2019). https://doi.org/10.3390/polym11030553CrossRef Wu, Z.-L., Qi, Y.-N., Yin, X.-J., Yang, X., Chenc, C.-M., Yu, J.-Y., Yu, J.-C., Lin, Y.-M., Hui, F., Liu, P.-L., Liang, Y.-X., Zhang, Y., Zhao, M.-S.: Polymer-based device fabrication and applications using direct laser writing technology. Polymers 11, 553 (2019). https://​doi.​org/​10.​3390/​polym11030553CrossRef
Metadaten
Titel
Optical analysis of methyl violet thin films/polymeric substrate for flexible organic technology
verfasst von
A. Abdel-Galil
M. A. Assiri
I. S. Yahia
Publikationsdatum
01.08.2020
Verlag
Springer US
Erschienen in
Optical and Quantum Electronics / Ausgabe 8/2020
Print ISSN: 0306-8919
Elektronische ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-020-02491-6

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