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Original Articles

Monitoring morphological and optical properties on hybrid porous polymer films

, , , , &
Pages 741-751 | Received 11 Aug 2017, Accepted 21 Aug 2017, Published online: 21 Oct 2017

References

  • Anzlovar, A., K. Kogej, Z. C. Orel, and M. Zigon. 2011. Polyol mediated nano size zinc oxide and nanocomposites with poly(methyl methacrylate). eXPRESS Polym. Lett. 5:604–619.
  • Lü, C., Y. Cheng, Y. Liu, F. Liu, and B. Yang. 2006. A facile route to ZnS-polymer nanocomposite optical materials with high nanophase content via γ-ray irradiation initiated bulk polymerization. Adv. Mater. 18:1188–1192.
  • Lü, C., J. Gao, Y. Fu, Y. Du, Y. Shi, and Z. Su. 2008. A ligand exchange route to highly luminescent surface-functionalized ZnS nanoparticles and their transparent polymer nanocomposites. Adv. Funct. Mater. 18:3070–3072.
  • Look, D. C., and B. Claflin. 2004. P-type doping and devices based on ZnO. Phys. Status Solidi B 241:624–630.
  • Look, D. C., D. C. Reynolds, C. W. Litton, R. L. Jones, D. B. Eason, and G. Cantwell. 2002. Characterization of homoepitaxial p-type ZnO grown by molecular beam epitaxy. Appl. Phys. Lett. 81:1830–1832.
  • Bitenc, M., P. Podbrscek, Z. C. Orel, M. A. Cleveland, J. A. Paramo, R. M. Peters, and Y. M. Strzhemechny. 2009. Correlation between morphology and defect luminescence in precipitated ZnO nanorod powders. Cryst. Growth Des. 9:997–1001.
  • Ambrozic, G., S. D. Skapin, M. Zigon, and Z. C. Orel. 2010. The synthesis of zinc oxide nanoparticles from zinc acetylacetonate hydrate and 1-butanol or isobutanol. J. Colloid Interface Sci. 346:317–323.
  • Bumajda, A., and M. Madkour. 2015. In situ growth of ZnO nanoparticles in precursor-insensitive water-in-oil microemulsion as soft nanoreactor. Nanoscale Res. Lett. 10:19–23.
  • Mondelaers, D., G. Vanhoyland, H. Van den Rul, J. D’Haen, M. K. Van Bael, J. Mullens, and L. C. Van Poucke. 2002. Synthesis of ZnO nanopowder via aqueous acetate-citrate gelation method. Mater. Res. Bull. 37:901–914.
  • Wang, Z., H. Zhang, L. Zhang, J. Yuan, and Y. Yan. 2003. Low-temperature synthesis of ZnO nanoparticles by solid-state pyrolytic reaction. Nanotechnology 14:11–15.
  • Burda, C., X. Chen, R. Narayanan, and M. A. El-Sayed. 2005. Chemistry and properties of nanocrystals of different shapes. Chem. Rev. 105:1025–1102.
  • Tiwari, A., and S. J. Dhoble. 2016. Stabilization of ZnS nanoparticles by polymeric matrices: Syntheses, optical properties and recent applications. RSC Adv. 6:64400–64420.
  • Zhang, W., J. He, Z. Liu, P. Ni, and X. Zhu. 2010. Biocompatible and pH-responsive triblock copolymer PEG-b-PCL-b-PDMAEMA: Synthesis, self-assembly, and application. J. Polym. Sci. Part A Polym. Chem. 48:1079–1091.
  • Liu, J. H., and Y. H. Chiu. 2010. Behaviors of self-assembled diblock copolymer with pendant photosensitive azobenzene segments. J. Polym. Sci. Part A Polym. Chem. 48:1142–1148.
  • Tobis, J., Y. Thomann, and J. C. Tiller. 2010. Synthesis and characterization of chiral and thermo responsive amphiphilic co-networks. Polymer 51:35–45.
  • Cheng, J. Y., C. A. Ross, H. I. Smith, and E. L. Thomas. 2006. Templated self-assembly of block copolymers: Top-down helps bottom-up. Adv. Mater. 18:2505–2521.
  • Segalman, R. A., H. Yokoyama, and E. J. Kramer. 2001. Graphoepitaxy of spherical domain block copolymer films. Adv. Mater. 13:1152–1155.
  • Kim, S., J. Lee, S. M. Jeon, H. H. Lee, K. Char, and B. H. Sohn. 2008. Orientation of lamellar nanostructures in the patterned thin films of a diblock copolymer. Macromolecules 41:3401–3404.
  • Heng, L., B. Wang, M. Li, Y. Zhang, and L. Jiang. 2013. Advances in fabrication materials of honeycomb structure films by the breath-figure method. Materials 6:460–482.
  • Kurono, N., R. Shimada, T. Ishihara, and M. Shimomura. 2002. Advances in fabrication materials of honeycomb structure films by the breath-figure method. Mol. Cryst. Liq. Cryst. 377:285–288.
  • Ha, J. M., J. H. Wolf, M. A. Hillmyer, and M. D. Ward. 2004. Polymorph selectivity under nanoscopic confinement. J. Am. Chem. Soc. 126:3382–3383.
  • Karthaus, O., C. Adachi, S. Kurimura, and T. Oyamada. 2004. Electroluminescence from self-organized “microdomes”. Appl. Phys. Lett. 84:4696–4698.
  • Zhan, X., and D. Zhu. 2010. Conjugated polymers for high-efficiency organic photovoltaics. Polym. Chem. 1:409–419.
  • Camargo, P. H. C., K. G. Satyanarayana, and F. Wypych. 2009. Nanocomposites: Synthesis, structure, properties and new application opportunities. Mater. Res. 12:1–39.
  • Kwok, W. M., A. B. Djurišić, Y. H. Leung, D. Li, K. H. Tam, D. L. Phillips, and W. K. Chan. 2006. Influence of annealing on stimulated emission in ZnO nanorods. Appl. Phys. Lett. 89:183112.1–183112.3.
  • Heo, Y. W., D. P. Norton, and S. J. Pearton. 2005. Origin of green luminescence in ZnO thin film grown by molecular beam epitaxy. J. Appl. Phys. 98:073502.1–073502.6.
  • Xie, R., T. Sekiguchi, T. Ishigaki, N. Ohashi, D. Li, D. Yang, B. Liu, and B. Yoshio. 2006. Enhancement and patterning of ultraviolet emission in ZnO with electron beam. Appl. Phys. Lett. 88:134103.1–134103.3.
  • Djurišić, A. B., Y. H. Leung, K. H. Tam, L. Ding, W. K. Ge, H. Y. Chen, and S. Gwo. 2006. Green, yellow and orange defect emission from ZnO nanostructures: Influence of the excitation wavelength. Appl. Phys. Lett. 88:103107.1–103107.3.
  • Affrossman, S., R. Jerome, S. A. O’Neill, T. Schmitt, and M. Stamm. 2000. Surface structure of thin film blends of polystyrene and poly(n -butyl methacrylate). Colloid Polym. Sci. 278:993–999.
  • Pizarro, G. C., O. G. Marambio, M. Jeria-Orell, D. T. Valdés, and K. E. Geckeler. 2013. Self-assembled nanostructures: Preparation, characterization, thermal, optical and morphological characteristics of amphiphilic diblock copolymers based on poly(2-hydroxyethyl methacrylate-block-N-phenylmaleimide). Polym. Int. 62:1528–1538.
  • Pizarro, G. C., O. G. Marambio, M. Jeria-Orell, D. P. Oyarzún, and K. E. Geckeler. 2016. Size, morphology and optical properties of ZnO nanoparticles prepared under the influence of honeycomb-porous poly[(2-hydroxyethyl methacrylate)m-block-poly(N-phenyl maleimide)n] copolymer films. Mater. Des. 111:513–521.
  • Ren, Q. J., S. Filippov, S. L. Chen, M. Devika, N. Koteeswara Reddy, C. W. Tu, W. M. Chen, and I. A. Buyanova. 2012. Evidence for coupling between exciton emissions and surface plasmon in Ni-coated ZnO nanowires. Nanotechnology 23:425201.1–425201.7.
  • Hanley, C., A. Thurber, C. Hanna, A. Punnoose, J. Zhang, and D. G. Wingett. 2009. The influences of cell type and ZnO nanoparticle size on immune cell cytotoxicity and cytokine induction. Nanoscale Res. Lett. 4:1409–1420.
  • Kim, M. S., G. S. Kim, and M. Y. Cho. 2010. Nitrogen-passivation effects of Si substrates on the properties of ZnO epitaxial layers grown by using plasma-assisted molecular beam epitaxy. J. Korean Phys. Soc. 56:827–831.
  • Kim, M. S., T. H. Kim, D. Y. Kim, G. S. Kim, H. Y. Choi, M. Y. Cho, S. M. Jeon, J. S. Kim, J. S. Kim, D. Y. Lee, J. S. Son, J. I. Lee, J. H. Kim, E. Kim, D. W. Hwang, and J. Y. Leem. 2009. Improvement in crystallinity and optical properties of ZnO epitaxial layers by thermal annealed ZnO buffer layers with oxygen plasma. J. Cryst. Growth 311:3568–3572.
  • Haase, M., H. Weller, and A. Henglein. 1988. Photochemistry and radiation chemistry of colloidal semiconductors. 23. Electron storage on ZnO particles and size quantization. J. Phys. Chem. B 92:482–487.
  • Fonoberor, V. A., and A. A. Balandin. 2004. Origin of ultraviolet photoluminescence in ZnO quantum dots: confined excitons versus surface-bound impurity exciton complexes. Appl. Phys. Lett. 85:5971–5977.
  • Kubelka-Munk, P. 1948. New contributions to the optics of intensely light-scattering materials. Part 1. J. Opt. Soc. Am. 38:448–457.
  • Meulenkamp, E. A. 1998. Synthesis and growth of ZnO nanoparticles. J. Phys. Chem. B 102:5566–5572.

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