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Performance enhancement of polymer Schottky diode by doping pentacene
Authors:K.S. Kang  Y. Chen  H.K. Lim  K.Y. Cho  K.J. Han  Jaehwan Kim
Affiliation:Creative Research Center for EAPap Actuator, Mechanical Engineering Department, Inha University 253 Yonghyun-Dong Nam-Ku 402-751, Incheon, South Korea
Abstract:Schottky diodes have been fabricated using pentacene-doped poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate) (PEDOT:PSS) as a semiconducting material. To understand the fundamental properties of the pentacene-doped PEDOT:PSS, ultraviolet visible (UV) absorption spectroscopy was employed. It was found that a significant amount of pentacene can dissolve in n-methylpyrrolidone solvent. No characteristic absorption peak of pentacene was observed in the UV-visible spectra of PEDOT:PSS films doped with pentacene,. However, the absorption intensity of the doped PEDOT:PSS films increased as the pentacene concentration increased in particular in the UV region. The atomic force microscope images show that the surface roughnesses of PEDOT:PSS films increased as the pentacene concentration increased. Three-layer Schottky diodes comprising Al/PEDOT:PSS/Au or Al/PEDOT:PSS-pentacene/Au were fabricated. The maximum forward currents of non-doped and doped Schottky diodes were 4.8 and 440 µA/cm2 at 3.3 MV/m, respectively. The forward current increased nearly two orders of magnitude for Schottky diode doped with 11.0 wt.% of pentacene.
Keywords:Schottky diode   Pentacene   PEDOT:PSS   Solution process
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