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Erschienen in: Journal of Materials Science: Materials in Electronics 9/2016

23.05.2016

Influence of polymer matrix on nonlinear optical properties and optical limiting threshold of polymer-ZnO nanocomposites

verfasst von: Haider Mohammed Shanshool, Muhammad Yahaya, Wan Mahmood Mat Yunus, Ibtisam Yahya Abdullah

Erschienen in: Journal of Materials Science: Materials in Electronics | Ausgabe 9/2016

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Abstract

Polymer/ZnO nanocomposites have received a great interest in its linear and nonlinear optical properties because of their potential application such as optical switching and optical limiting devices. In the current work, four polymer/ZnO nanocomposites as a flexible foil have been prepared using casting method. Poly (methyl methacrylate) (PMMA), poly (vinylidene fluoride), polyvinyl alcohol and polystyrene were used as polymer matrices, while ZnO nanoparticles of different concentrations were used as filler. The composition of nanocomposites materials was confirmed by the energy dispersive X-ray (EDX), also a good spatial distribution of elements in the nanocomposites was showed by EDS mapping. The UV–Visible transmittance spectra of as-prepared samples showed low transmittance in the UV region and the peak absorption in the range of 370–377 nm depended on the polymer matrix. The optical absorptive and refractive nonlinearities parameters such as absorption coefficient and refractive index of the as-prepared sample were analyzed using an open and closed aperture single beam Z-scan technique via Q-switched Nd-YAG pulse laser at 532 nm. The nonlinear refractive index was in the order of 10−12 cm2/W with a negative sign whereas the nonlinear absorption coefficient was in the order of 10−7 cm/W. In order to evaluate the suitability of the samples as optical limiting, the optical limiting threshold of the samples was measured by using transmittance technique. The results showed that the prepared nanocomposites can be considered as an excellent candidate for optical limiting devices. PMMA/ZnO with high concentration of ZnO nanoparticles showed low optical limiting threshold, which was equal to 70 Mw/cm2.

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Literatur
1.
Zurück zum Zitat S. Li, M.M. Lin, M.S. Toprak, D.K. Kim, M. Muhammed, Nanocomposites of polymer and inorganic nanoparticles for optical and magnetic applications. Nano Rev. 1, 1–19 (2010)CrossRef S. Li, M.M. Lin, M.S. Toprak, D.K. Kim, M. Muhammed, Nanocomposites of polymer and inorganic nanoparticles for optical and magnetic applications. Nano Rev. 1, 1–19 (2010)CrossRef
2.
Zurück zum Zitat P.P. Jeeju, S. Jayalekshmi, K. Chandrasekharan, P. Sudheesh, Enhanced linear and nonlinear optical properties of thermally stable ZnO/poly(styrene)-poly(methyl methacrylate) nanocomposite films. Thin Solid Films 531, 378–384 (2013)CrossRef P.P. Jeeju, S. Jayalekshmi, K. Chandrasekharan, P. Sudheesh, Enhanced linear and nonlinear optical properties of thermally stable ZnO/poly(styrene)-poly(methyl methacrylate) nanocomposite films. Thin Solid Films 531, 378–384 (2013)CrossRef
3.
Zurück zum Zitat S.S. Chiad, Dispersion parameters of copper sulphate doped PMMA. Mater. Methods 7(1), 162–167 (2010) S.S. Chiad, Dispersion parameters of copper sulphate doped PMMA. Mater. Methods 7(1), 162–167 (2010)
4.
Zurück zum Zitat A. Anžlovar, K. Kogej, Z. Crnjak Orel, M. Žigon, Polyol mediated nano size zinc oxide and nanocomposites with poly(methyl methacrylate). Express Polym. Lett. 5(7), 604–619 (2011)CrossRef A. Anžlovar, K. Kogej, Z. Crnjak Orel, M. Žigon, Polyol mediated nano size zinc oxide and nanocomposites with poly(methyl methacrylate). Express Polym. Lett. 5(7), 604–619 (2011)CrossRef
5.
Zurück zum Zitat D. Dorranian, Y. Golian, A. Hojabri, Investigation of nitrogen plasma effect on the nonlinear optical properties of PMMA. J. Theor. Appl. Phys. 6(1), 1 (2012)CrossRef D. Dorranian, Y. Golian, A. Hojabri, Investigation of nitrogen plasma effect on the nonlinear optical properties of PMMA. J. Theor. Appl. Phys. 6(1), 1 (2012)CrossRef
6.
Zurück zum Zitat B. Ahmed, S.K. Raghuvanshi, N.P. Sharma, J.B.M. Krishna, M.A. Wahab, 1.25 MeV Gamma irradiated induced physical and chemical changes in poly vinylidene fluoride (PVDF) polymer. Prog. Nanotechnol. Nanomater. 2(2), 42–46 (2013) B. Ahmed, S.K. Raghuvanshi, N.P. Sharma, J.B.M. Krishna, M.A. Wahab, 1.25 MeV Gamma irradiated induced physical and chemical changes in poly vinylidene fluoride (PVDF) polymer. Prog. Nanotechnol. Nanomater. 2(2), 42–46 (2013)
7.
Zurück zum Zitat A.H.S. El.Sayed, W.M. Morsi, A.M. El Sayed, Physical properties of ZnO/PVA nanocomposite films, in Sixth International Conference on Nano-Technology in Construction, Egyptian-Russian University, 2014 A.H.S. El.Sayed, W.M. Morsi, A.M. El Sayed, Physical properties of ZnO/PVA nanocomposite films, in Sixth International Conference on Nano-Technology in Construction, Egyptian-Russian University, 2014
8.
Zurück zum Zitat T.A. Hamdalla, T.A. Hanafy, A.E. Bekheet, Influence of erbium ions on the optical and structural properties of polyvinyl alcohol. J. Spectrosc. (2015) T.A. Hamdalla, T.A. Hanafy, A.E. Bekheet, Influence of erbium ions on the optical and structural properties of polyvinyl alcohol. J. Spectrosc. (2015)
9.
Zurück zum Zitat P.P. Jeeju, S. Jayalekshmi, K. Chandrasekharan, P. Sudheesh, Size dependent nonlinear optical properties of spin coated zinc oxide-polystyrene nanocomposite films. Opt. Commun. 285(24), 5433–5439 (2012)CrossRef P.P. Jeeju, S. Jayalekshmi, K. Chandrasekharan, P. Sudheesh, Size dependent nonlinear optical properties of spin coated zinc oxide-polystyrene nanocomposite films. Opt. Commun. 285(24), 5433–5439 (2012)CrossRef
10.
Zurück zum Zitat S.J. Mathews, S. Chaitanya Kumar, L. Giribabu, S. Venugopal Rao, Large third-order optical nonlinearity and optical limiting in symmetric and unsymmetrical phthalocyanines studied using Z-scan. Opt. Commun. 280(1), 206–212 (2007)CrossRef S.J. Mathews, S. Chaitanya Kumar, L. Giribabu, S. Venugopal Rao, Large third-order optical nonlinearity and optical limiting in symmetric and unsymmetrical phthalocyanines studied using Z-scan. Opt. Commun. 280(1), 206–212 (2007)CrossRef
11.
Zurück zum Zitat H. Aleali, N. Mansour, Nonlinear responses and optical limiting behavior of Ag nanoparticle suspension. J. Sci. Islam. Repub. Iran 21(3), 273–278 (2010) H. Aleali, N. Mansour, Nonlinear responses and optical limiting behavior of Ag nanoparticle suspension. J. Sci. Islam. Repub. Iran 21(3), 273–278 (2010)
12.
Zurück zum Zitat S.S.K. Raavi, S. Venugopal Rao, L. Giribabu, D. Narayana Rao, Nonlinear optical properties of alkyl phthalocyanines in the femtosecond, nanosecond, and cw excitation regimes. Proc. SPIE 6875, 68751D (2008)CrossRef S.S.K. Raavi, S. Venugopal Rao, L. Giribabu, D. Narayana Rao, Nonlinear optical properties of alkyl phthalocyanines in the femtosecond, nanosecond, and cw excitation regimes. Proc. SPIE 6875, 68751D (2008)CrossRef
13.
Zurück zum Zitat K.K. Nagaraja, S. Pramodini, P. Poornesh, H.S. Nagaraja, Effect of annealing on the structural and nonlinear optical properties of ZnO thin films under cw regime. J. Phys. D Appl. Phys. 46(5), 055106 (2013)CrossRef K.K. Nagaraja, S. Pramodini, P. Poornesh, H.S. Nagaraja, Effect of annealing on the structural and nonlinear optical properties of ZnO thin films under cw regime. J. Phys. D Appl. Phys. 46(5), 055106 (2013)CrossRef
14.
Zurück zum Zitat A. Anžlovar, Z. Crnjak Orel, K. Kogej, M. Žigon, Polyol-mediated synthesis of zinc oxide nanorods and nanocomposites with poly(methyl methacrylate). J. Nanomater. 2012, 1–9 (2012)CrossRef A. Anžlovar, Z. Crnjak Orel, K. Kogej, M. Žigon, Polyol-mediated synthesis of zinc oxide nanorods and nanocomposites with poly(methyl methacrylate). J. Nanomater. 2012, 1–9 (2012)CrossRef
15.
Zurück zum Zitat M. Khan, M. Chen, C. Wei, J. Tao, N. Huang, Z. Qi, L. Li, Synthesis at the nanoscale of ZnO into poly(methyl methacrylate) and its characterization. Appl. Phys. A 117(3), 1085–1093 (2014)CrossRef M. Khan, M. Chen, C. Wei, J. Tao, N. Huang, Z. Qi, L. Li, Synthesis at the nanoscale of ZnO into poly(methyl methacrylate) and its characterization. Appl. Phys. A 117(3), 1085–1093 (2014)CrossRef
16.
Zurück zum Zitat A.P. Indolia, M.S. Gaur, Optical properties of solution grown PVDF-ZnO nanocomposite thin films. J. Polym. Res. 20(1), 1–8 (2013)CrossRef A.P. Indolia, M.S. Gaur, Optical properties of solution grown PVDF-ZnO nanocomposite thin films. J. Polym. Res. 20(1), 1–8 (2013)CrossRef
17.
Zurück zum Zitat N.B.R. Kumar, V. Crasta, B.M. Praveen, Advancement in microstructural, optical, and mechanical properties of PVA (Mowiol 10-98) doped by ZnO nanoparticles. Phys. Res. Int. 2014, 1–9 (2014)CrossRef N.B.R. Kumar, V. Crasta, B.M. Praveen, Advancement in microstructural, optical, and mechanical properties of PVA (Mowiol 10-98) doped by ZnO nanoparticles. Phys. Res. Int. 2014, 1–9 (2014)CrossRef
18.
Zurück zum Zitat A.N. Mallika, A.R. Reddy, K.V. Reddy, Annealing effects on the structural and optical properties of ZnO nanoparticles with PVA and CA as chelating agents. J. Adv. Ceram. 4(2), 123–129 (2015)CrossRef A.N. Mallika, A.R. Reddy, K.V. Reddy, Annealing effects on the structural and optical properties of ZnO nanoparticles with PVA and CA as chelating agents. J. Adv. Ceram. 4(2), 123–129 (2015)CrossRef
19.
Zurück zum Zitat L.M. Irimpan, Spectral and nonlinear optical characterization of ZnO nanocomposites. Cochin University of Science and Technology, Ph.D. Thesis, 2008 L.M. Irimpan, Spectral and nonlinear optical characterization of ZnO nanocomposites. Cochin University of Science and Technology, Ph.D. Thesis, 2008
20.
Zurück zum Zitat P.C. Haripadmam, M.K. Kavitha, H. John, B. Krishnan, P. Gopinath, Optical limiting studies of ZnO nanotops and its polymer nanocomposite films. Appl. Phys. Lett. 101(7), 071103 (2012)CrossRef P.C. Haripadmam, M.K. Kavitha, H. John, B. Krishnan, P. Gopinath, Optical limiting studies of ZnO nanotops and its polymer nanocomposite films. Appl. Phys. Lett. 101(7), 071103 (2012)CrossRef
21.
Zurück zum Zitat M. Sheik-Bahae, A.A. Said, E.W. Van Stryland, High-sensitivity, single-beam n(2) measurements. Opt. Lett. 14(17), 955–957 (1989)CrossRef M. Sheik-Bahae, A.A. Said, E.W. Van Stryland, High-sensitivity, single-beam n(2) measurements. Opt. Lett. 14(17), 955–957 (1989)CrossRef
22.
Zurück zum Zitat M.S. Bahae, A.A. Said, T.H. Wei, D.J. Hagan, E.W. Van Stryland, Sensitive measurements of optical nonlinearities using a single beam. IEEE J. Quantum Electron. 26(4), 760–769 (1990)CrossRef M.S. Bahae, A.A. Said, T.H. Wei, D.J. Hagan, E.W. Van Stryland, Sensitive measurements of optical nonlinearities using a single beam. IEEE J. Quantum Electron. 26(4), 760–769 (1990)CrossRef
23.
Zurück zum Zitat E.W. Van Stryland, M. Sheik-bahae, Z-scan measurements of optical nonlinearities. Order A J. Theory Ordered Sets Appl. 3, 655–692 (1998) E.W. Van Stryland, M. Sheik-bahae, Z-scan measurements of optical nonlinearities. Order A J. Theory Ordered Sets Appl. 3, 655–692 (1998)
24.
Zurück zum Zitat S. Husaini, H. Teng, V.M. Menon, Enhanced nonlinear optical response of metal nanocomposite based photonic crystals. Appl. Phys. Lett. 101(11), 111103 (2012)CrossRef S. Husaini, H. Teng, V.M. Menon, Enhanced nonlinear optical response of metal nanocomposite based photonic crystals. Appl. Phys. Lett. 101(11), 111103 (2012)CrossRef
25.
Zurück zum Zitat P.C. Haripadmam, H. John, R. Philip, P. Gopinath, Enhanced optical limiting in polystyrene-ZnO nanotop composite films. Opt. Lett. 39(3), 474–477 (2014)CrossRef P.C. Haripadmam, H. John, R. Philip, P. Gopinath, Enhanced optical limiting in polystyrene-ZnO nanotop composite films. Opt. Lett. 39(3), 474–477 (2014)CrossRef
26.
Zurück zum Zitat H.M. Shanshool, M. Yahaya, W.M.M. Yunus, I.Y. Abdullah, Measurements of nonlinear optical properties of PVDF/ZnO Using Z-scan technique. Braz. J. Phys. 45(5), 538–544 (2015)CrossRef H.M. Shanshool, M. Yahaya, W.M.M. Yunus, I.Y. Abdullah, Measurements of nonlinear optical properties of PVDF/ZnO Using Z-scan technique. Braz. J. Phys. 45(5), 538–544 (2015)CrossRef
27.
Zurück zum Zitat C. Jacinto, D.N. Messias, A.A. Andrade, S.M. Lima, M.L. Baesso, T. Catunda, Thermal lens and Z-scan measurements: thermal and optical properties of laser glasses—a review. J. Non. Cryst. Solids 352(32–35), 3582–3597 (2006)CrossRef C. Jacinto, D.N. Messias, A.A. Andrade, S.M. Lima, M.L. Baesso, T. Catunda, Thermal lens and Z-scan measurements: thermal and optical properties of laser glasses—a review. J. Non. Cryst. Solids 352(32–35), 3582–3597 (2006)CrossRef
28.
Zurück zum Zitat L.R. Freitas, C. Jacinto, A. Ródenas, D. Jaque, T. Catunda, Time-resolved study electronic and thermal contributions to the nonlinear refractive index of Nd3+:SBN laser crystals. J. Lumin. 128(5–6), 1013–1015 (2008)CrossRef L.R. Freitas, C. Jacinto, A. Ródenas, D. Jaque, T. Catunda, Time-resolved study electronic and thermal contributions to the nonlinear refractive index of Nd3+:SBN laser crystals. J. Lumin. 128(5–6), 1013–1015 (2008)CrossRef
29.
Zurück zum Zitat F.J. Aranda, D. Lapalli, V.G.L.N. Rao, J.P. Zhov, Z. Chen, J.A. Akkara, D.L. Kaplan, F. Roach, Nonlinear optical interactions in bacteriohodospin using Z-scan. Opt. Rev. 2(3), 204–206 (1995)CrossRef F.J. Aranda, D. Lapalli, V.G.L.N. Rao, J.P. Zhov, Z. Chen, J.A. Akkara, D.L. Kaplan, F. Roach, Nonlinear optical interactions in bacteriohodospin using Z-scan. Opt. Rev. 2(3), 204–206 (1995)CrossRef
30.
Zurück zum Zitat F.G. Battaglin, P. Calvelli, E. Cattaruzza, R.P. Gonella, Z-scan study on the nonlinear refractive index of copper nanocluster composite silica glass. Appl. Phys. Lett. 78(25), 3953–3955 (2001)CrossRef F.G. Battaglin, P. Calvelli, E. Cattaruzza, R.P. Gonella, Z-scan study on the nonlinear refractive index of copper nanocluster composite silica glass. Appl. Phys. Lett. 78(25), 3953–3955 (2001)CrossRef
31.
Zurück zum Zitat H.G. Yang, W. Wang, L. Yan, Z.C. Lu, G. Yang, Z-scan determination of the large third-order optical nonlinearity of Rh:BaTiO3 thin films deposited on MgO substrates. Opt. Commun. 209, 445–449 (2002)CrossRef H.G. Yang, W. Wang, L. Yan, Z.C. Lu, G. Yang, Z-scan determination of the large third-order optical nonlinearity of Rh:BaTiO3 thin films deposited on MgO substrates. Opt. Commun. 209, 445–449 (2002)CrossRef
32.
Zurück zum Zitat V. Kumari, V. Kumar, D.M. Purnima, B.P. Malik, R.M. Mehra, Effect of surface roughness on laser induced nonlinear optical properties of annealed ZnO thin films. J. Mater. Sci. Technol. 28(6), 506–511 (2012)CrossRef V. Kumari, V. Kumar, D.M. Purnima, B.P. Malik, R.M. Mehra, Effect of surface roughness on laser induced nonlinear optical properties of annealed ZnO thin films. J. Mater. Sci. Technol. 28(6), 506–511 (2012)CrossRef
33.
Zurück zum Zitat Y.S. Tamgadge, A.L. Sunatkari, S.S. Talwatkar, V.G. Pahurkar, G.G. Muley, “Linear and nonlinear optical properties of nanostructured Zn(1 − x)SrxO–PVA composite thin films. Opt. Mater. (Amst) 37, 42–50 (2014)CrossRef Y.S. Tamgadge, A.L. Sunatkari, S.S. Talwatkar, V.G. Pahurkar, G.G. Muley, “Linear and nonlinear optical properties of nanostructured Zn(1 − x)SrxO–PVA composite thin films. Opt. Mater. (Amst) 37, 42–50 (2014)CrossRef
34.
Zurück zum Zitat R.W. Boyd, Nonlinear Optics, Third edn. (2007) R.W. Boyd, Nonlinear Optics, Third edn. (2007)
35.
Zurück zum Zitat R. De Nalda, R. Del Coso, J. Requejo-Isidro, J. Olivares, A. Suarez-Garcia, J. Solis, C.N. Afonso, Limits to the determination of the nonlinear refractive index by the Z-scan method. J. Opt. Soc. Am. B 19(2), 289 (2002)CrossRef R. De Nalda, R. Del Coso, J. Requejo-Isidro, J. Olivares, A. Suarez-Garcia, J. Solis, C.N. Afonso, Limits to the determination of the nonlinear refractive index by the Z-scan method. J. Opt. Soc. Am. B 19(2), 289 (2002)CrossRef
36.
Zurück zum Zitat Y.S. Tamgadge, V.G. Pahurkar, S.S. Talwatkar, A.L. Sunatkari, G.G. Muley, Thermally stimulated third-order optical nonlinearity in Cd-doped CuO–PVA thin films under cw laser illumination. Appl. Phys. B 120(2), 373–381 (2015)CrossRef Y.S. Tamgadge, V.G. Pahurkar, S.S. Talwatkar, A.L. Sunatkari, G.G. Muley, Thermally stimulated third-order optical nonlinearity in Cd-doped CuO–PVA thin films under cw laser illumination. Appl. Phys. B 120(2), 373–381 (2015)CrossRef
37.
Zurück zum Zitat G. Ghosh, Handbook of Thermo-Optic Coefficients of Optical Materials with Applications, vol. 5 (Academic Press, San Diego, 1998) G. Ghosh, Handbook of Thermo-Optic Coefficients of Optical Materials with Applications, vol. 5 (Academic Press, San Diego, 1998)
38.
Zurück zum Zitat G. Vinitha, K. Manirahulan, A. Ramalingam, Optical limiting characteristics of core-shell nanoparticles. J. Nonlinear Opt. Phys. Mater. 19(4), 621–628 (2010)CrossRef G. Vinitha, K. Manirahulan, A. Ramalingam, Optical limiting characteristics of core-shell nanoparticles. J. Nonlinear Opt. Phys. Mater. 19(4), 621–628 (2010)CrossRef
39.
Zurück zum Zitat A.I. Ryasnyanskiy, B. Palpant, S. Debrus, U. Pal, A.L. Stepanov, Optical nonlinearities of Au nanoparticles embedded in a zinc oxide matrix. Opt. Commun. 273(2), 538–543 (2007)CrossRef A.I. Ryasnyanskiy, B. Palpant, S. Debrus, U. Pal, A.L. Stepanov, Optical nonlinearities of Au nanoparticles embedded in a zinc oxide matrix. Opt. Commun. 273(2), 538–543 (2007)CrossRef
40.
Zurück zum Zitat R.K.H. Manshad, Q.M.A. Hassan, Optical limiting properties of magenta doped PMMA under CW laser illumination. Adv. Appl. Sci. Res. 3(6), 3696–3702 (2012) R.K.H. Manshad, Q.M.A. Hassan, Optical limiting properties of magenta doped PMMA under CW laser illumination. Adv. Appl. Sci. Res. 3(6), 3696–3702 (2012)
41.
Zurück zum Zitat Q.M.A. Hassan, A.Y. Al-ahmad, M.F. Al-mudhaffer, H.A. Badran, Third-order optical nonlinearities and optical-limiting properties of phloxine b dye doped pmma films investigated by z-scan technique. Rom. J. Phys. 58(7–8), 962–969 (2013) Q.M.A. Hassan, A.Y. Al-ahmad, M.F. Al-mudhaffer, H.A. Badran, Third-order optical nonlinearities and optical-limiting properties of phloxine b dye doped pmma films investigated by z-scan technique. Rom. J. Phys. 58(7–8), 962–969 (2013)
42.
Zurück zum Zitat L. Irimpan, V.P.N. Nampoori, P. Radhakrishnan, Enhanced luminescence and nonlinear optical properties of nanocomposites of ZnO–Cu. J. Mater. Res. 23(11), 2836–2845 (2008)CrossRef L. Irimpan, V.P.N. Nampoori, P. Radhakrishnan, Enhanced luminescence and nonlinear optical properties of nanocomposites of ZnO–Cu. J. Mater. Res. 23(11), 2836–2845 (2008)CrossRef
Metadaten
Titel
Influence of polymer matrix on nonlinear optical properties and optical limiting threshold of polymer-ZnO nanocomposites
verfasst von
Haider Mohammed Shanshool
Muhammad Yahaya
Wan Mahmood Mat Yunus
Ibtisam Yahya Abdullah
Publikationsdatum
23.05.2016
Verlag
Springer US
Erschienen in
Journal of Materials Science: Materials in Electronics / Ausgabe 9/2016
Print ISSN: 0957-4522
Elektronische ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-016-5001-8

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