Highly efficient flexible optoelectronic devices using metal nanowire-conducting polymer composite transparent electrode

Here, we report a comprehensive analysis of the electrical, optical, mechanical, and surface morphological properties of composite nanostrutures based on silver nanowires (AgNW) and PEDOT:PSS conducting polymer for the use as flexible and transparent electrodes. Compared to ITO or the single materia...

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Veröffentlicht in:Electronic materials letters 2015-09, Vol.11 (5), p.906-914
Hauptverfasser: Jung, Eui Dae, Nam, Yun Seok, Seo, Houn, Lee, Bo Ram, Yu, Jae Choul, Lee, Sang Yun, Kim, Ju-Young, Park, Jang-Ung, Song, Myoung Hoon
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Sprache:eng
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Zusammenfassung:Here, we report a comprehensive analysis of the electrical, optical, mechanical, and surface morphological properties of composite nanostrutures based on silver nanowires (AgNW) and PEDOT:PSS conducting polymer for the use as flexible and transparent electrodes. Compared to ITO or the single material of AgNW or PEDOT:PSS, the AgNW/PEDOT:PSS composite electrode showed high electrical conductivity with a low sheet resistance of 26.8 Ω/sq at 91% transmittance (at 550 nm), improves surface smoothness, and enhances mechanical properties assisted by an amphiphilic fluoro-surfactant. The polymeric light-emitting diodes (PLEDs) and organic solar cells (OSCs) using the AgNW/PEDOT:PSS composite electrode showed higher device performances than those with AgNW and PEDOT:PSS electrodes and excellent flexibility under bending test. These results indicates that the AgNW/PEDOT:PSS composite presented is a good candidate as next-generation transparent elelctrodes for applications into flexible optoelectronic devices.
ISSN:1738-8090
2093-6788
DOI:10.1007/s13391-015-5120-z