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Transparent and conductive PEDOT:PSS/Ag NW/PEDOT:PSS hybrid films prepared by spin-coating at room temperature

Transparent and conductive PEDOT:PSS/Ag NW/PEDOT:PSS hybrid films prepared by spin-coating at room temperature
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摘要 PEDOT:PSS/Ag NW/PEDOT:PSS hybrid films were deposited on PET substrates by the spin coating technique at room temperature. The optical transmittance, sheet resistance, crystallization and surface morphology were characterized by using the double beam spectrophotometer, Hall effect system, X-ray diffractometer and field emission scanning electron microscopy. XRD patterns of the hybrid films display characteristic diffraction peaks of Ag (111) and Ag (200), and the Ag NW networks have a polycrystalline structure with a Ag (111) preferred orientation. A high transmittance of 83.95% at the 550 nm wavelength and a low sheet resistance of 21.98 Ω/□ are achieved for 3-PEDOT:PS S/5-Ag NW/3-PEDOT: PS S hybrid films. PEDOT:PSS/Ag NW/PEDOT:PSS hybrid films were deposited on PET substrates by the spin coating technique at room temperature. The optical transmittance, sheet resistance, crystallization and surface morphology were characterized by using the double beam spectrophotometer, Hall effect system, X-ray diffractometer and field emission scanning electron microscopy. XRD patterns of the hybrid films display characteristic diffraction peaks of Ag (111) and Ag (200), and the Ag NW networks have a polycrystalline structure with a Ag (111) preferred orientation. A high transmittance of 83.95% at the 550 nm wavelength and a low sheet resistance of 21.98 Ω/□ are achieved for 3-PEDOT:PS S/5-Ag NW/3-PEDOT: PS S hybrid films.
出处 《Journal of Semiconductors》 EI CAS CSCD 2015年第12期48-52,共5页 半导体学报(英文版)
基金 supported by the National Natural Science Foundation of China(No.10974077) the Innovation Project of Shandong Graduate Education,China(No.SDYY13093)
关键词 transparent conductive film sheet resistance TRANSMITTANCE silver nanowires hybrid films transparent conductive film sheet resistance transmittance silver nanowires hybrid films
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参考文献18

  • 1Yang Gui, Zhang Yufeng, Yan Xunwang. Electronic structureand optical properties of a new type of semiconductor material: grapheme monoxide. Journal of Semiconductors, 2013, 34(8): 083004.
  • 2Song S M, Yang T L, Xin Y Q, et al. Effect of GZO thickness and annealing temperature on the structural, electrical and opti- cal properties of GZO/Ag/GZO sandwich films. Current Applied Physics, 2010, 10(2): 452.
  • 3Yu X M, Yu X, Zhang J J, et al. Investigation of light transmis- sion and scattering properties in silver nanowire mesh transparent electrodes. Mater Lett, 2015, 145:219.
  • 4Liu B T, Hsu C H, Wang W H. A comparative study on prepara- tion of conductive and transparent carbon nanotube thin films. Journal of the Taiwan Institute of Chemical Engineers, 2012, 43(1): 147.
  • 5Zhang W F, Bi X H, Zhao X M, et al. lsopropanol-treated PE- DOT:PSS as electron transport layer in polymer solar cells. Org Electron, 2014, 15(12): 3445.
  • 6Lim J W, Cho D Y, Eun K, et al. Mechanical integrity of flexible Ag nanowire network electrodes coated on colorless PI substrates for flexible organic solar cells. Solar Energy Materials & Solar Cells, 2012, 105:69.
  • 7Lira J W, Cho D Y, Kim J, et al. Simple brnsh-painting of flexi- ble and transparent Ag nanowire network electrodes as an alter- native ITO anode for cost-efficient flexible organic solar cells. Solar Energy Materials & Solar Cells, 2012, 107:348.
  • 8Li Z F, Qin F, Liu T F, et al. Optical properties and conductivity of PEDOT:PSS films treated by polyethylenimine solution for organic solar cells. Org Electron, 2015, 21:144.
  • 9Ouyang J Y. "Secondary doping" methods to significantly en-hance the conductivity of PEDOT:PSS for its application as transparent electrode of optoelectronic devices. Displays, 2013, 34(5): 423.
  • 10Choi K H, Kim J, Noh Y J, et al. Ag nanowire-embedded ITO films as a near-infrared transparent and flexible anode for flexible organic solar cells. Solar Energy Materials & Solar Cells, 2013, I10:147.

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