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        은 나노입자의 크기 및 형태가 자가조립 망상구조를 갖는투명전도성 필름의 광학 및 전기 특성에 미치는 영향

        신용우,김규병,노수진,소순영 한국공업화학회 2018 공업화학 Vol.29 No.2

        The effect of the average particle size and shape of silver nanoparticles for the transparent conductive film (TCF) was studied. Optical and electrical properties of silver conductive lines coated on the polyethylene terephthalate (PET) film was also measured. Silver nanoparticles produced by Ag-CM, Ag-ME, Ag-EE methods showed an excellent conductivity compared to those produced by Ag-EB, Ag-CR and Ag-PL methods, but a little difference in the transparency. In the case of the former three silver nanoparticles, the average particle size was about 80 nm or less and the size was uniform. For the latter case, the severe agglomeration phenomena of particles was observed and the average particle size was 100 nm or more. This result was consistent with the result of the uniformity of the pattern shape and thickness on conductive line patterns observed by SEM. Therefore, it was confirmed that the electrical characteristics could be obtained when the average particle size of silver nanoparticles is smaller and the uniformity of the particles is maintained.

      • 2P-165 Effect of particle size and shape of silver nanoparticles on conductivity of transparent conductive film

        소순영,신용우,김규병 한국공업화학회 2017 한국공업화학회 연구논문 초록집 Vol.2017 No.1

        The size of silver nanoparticles(Ag NPs) used for the production of transparent conductive films (TCF) has a primary effect on the dispersion stability. Therefore, the manufacturing method of Ag NPs is an important factor affecting the TCF performance. This determines the size and shape of the Ag NPs according to the manufacturing method. In addition, metal and organic components that have not been purified during Ag NPs production may affect the transparent conductive coating solution, which may result in deterioration of adherence and conductivity after transparent conductive coating. In this study, the effect of average particle size and morphology of Ag NPs on thickness and shape of silver conductive lines formed on PET film was analyzed by SEM. Based on these results, we investigated the effect of average particle size and morphology of Ag NPs on conductivity of TCF.

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