• Photonics Research
  • Vol. 3, Issue 2, 32 (2015)
Arfat Pradana and Martina Gerken*
Author Affiliations
  • Institute of Electrical and Information Engineering, Christian-Albrechts-Universit?t zu Kiel,Kaiserstr. 2, D-24143 Kiel, Germany
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    DOI: 10.1364/prj.3.000032 Cite this Article Set citation alerts
    Arfat Pradana, Martina Gerken. Photonic crystal slabs in flexible organic light-emitting diodes[J]. Photonics Research, 2015, 3(2): 32 Copy Citation Text show less
    References

    [1] A. Buckley, ed., Organic Light-Emitting Diodes (OLEDs), Materials, Devices and Applications (Woodhead, 2013).

    [2] Z. Xie, L.-S. Hung, and F. Zhu, “A flexible top-emitting organic light-emitting diode on steel foil,” Chem. Phys. Lett. 381, 691– 696 (2003).

    [3] J. Zhao, S. Xie, S. Han, Z. Yang, L. Ye, and T. Yang, “A bilayer organic light-emitting diode using flexible ITO anode,” Phys. Status Solidi 184, 233–238 (2001).

    [4] M. S. Weaver, L. A. Michalski, K. Rajan, M. A. Rothman, J. A. Silvernail, J. J. Brown, P. E. Burrows, G. L. Graff, M. E. Gross, P. M. Martin, M. Hall, E. Mast, C. Bonham, W. Bennett, and M. Zumhoff, “Organic light-emitting devices with extended operating lifetimes on plastic substrates,” Appl. Phys. Lett. 81, 2929– 2931 (2002).

    [5] A. N. Krasnov, “High-contrast organic light-emitting diodes on flexible substrates,” Appl. Phys. Lett. 80, 3853–3855 (2002). 6. S.-Y. Kim, J.-H. Lee, J.-H. Lee, and J.-J. Kim, “High contrast flexible organic light emitting diodes under ambient light without sacrificing luminous efficiency,” Org. Electron. 13, 826–832 (2012).

    [6] R. Paetzold, K. Heuser, D. Henseler, S. Roeger, and G. Wittmann, “Performance of flexible polymeric light-emitting diodes under bending conditions,” Appl. Phys. Lett. 82, 3342–3344 (2003).

    [7] J. Liang, L. Li, X. Niu, Z. Yu, and Q. Pei, “Elastomeric polymer light-emitting devices and displays,” Nat. Photonics 7, 817–824 (2013).

    [8] Y.-H. Ho, C.-C. Liu, S.-W. Liu, H. Liang, C.-W. Chu, and P.-K. Wei, “Efficiency enhancement of flexible organic light-emitting devices by using antireflection nanopilars,” Opt. Express 19, A295–A302 (2011).

    [9] J. M. Lupton, B. J. Matterson, I. D. W. Samuel, M. J. Jory, and W. L. Barnes, “Bragg scattering from periodically microstructured light emitting diodes,” Appl. Phys. Lett. 77, 3340–3342 (2000).

    [10] U. Geyer, J. Hauss, B. Riedel, S. Gleiss, U. Lemmer, and M. Gerken, “Large-scale patterning of indium tin oxide electrodes for guided mode extraction from organic light-emitting diodes,” J. Appl. Phys. 104, 093111 (2008).

    [11] B. Riedel, J. Hauss, U. Geyer, J. Guetlein, U. Lemmer, and M. Gerken, “Enhancing outcoupling efficiency of indium-tinoxide- free organic light-emitting diodes via nanostructured high index layers,” Appl. Phys. Lett. 96, 243302 (2010).

    [12] A. Pradana, C. Kluge, and M. Gerken, “Tailoring the refractive index of nanoimprint resist by blending with TiO2 nanoparticles,” Opt. Mater. Express 4, 329–337 (2014).

    [13] A. Pradana and M. Gerken, “Nanostructured, ITO-free electrodes for OLED emission control,” in MRS Proceedings, Vol. 1699 (Cambridge University, 2014).

    [14] M. Hansen, M. Ziegler, H. Kohlstedt, A. Pradana, M. R?dler, and M. Gerken, “UV capillary force lithography for multiscale structures,” J. Vac. Sci. Technol. B 30, 031601 (2012).

    [15] M. Vosgueritchian, D. J. Lipomi, and Z. Bao, “Highly conductive and transparent PEDOT:PSS films with a fluorosurfactant for stretchable and flexible transparent electrodes,” Adv. Funct. Mater. 22, 421–428 (2012).

    [16] A. M. Nardes, M. Kemerink, M. M. de Kok, E. Vinken, K. Maturova, and R. A. J. Janssen, “Conductivity, work function, and environmental stability of PEDOT:PSS thin films treated with sorbitol.,” Org. Electron. 9, 727–734 (2008).

    Arfat Pradana, Martina Gerken. Photonic crystal slabs in flexible organic light-emitting diodes[J]. Photonics Research, 2015, 3(2): 32
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