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  • The main parameters, which may influence the resulting quality of the printed functional layers, are the thickness and the layer homogeneity. For evaluation of these parameters, currently, different methods can be used. However some of these methods may have various drawbacks and therefore new methods are still being searched and developed. The layer thickness can be determined by mechanical (or optical) profilometers. Another approach is represented by using the spectroscopic methods, e.g. UV-VIS or the photoacoustics. After some promising results have been received during the first photoacoustic measurements of spiral coated functional layers, further measurements have been carried out to prove the capability of this method for the evaluation of layer thickness with the screen printed transparent PEDOT:PSS based conductive polymer layers and also silver based conductive composite inks. As the substrate material, flexible polymer foil was used. This paper discusses the progress in photoacoustic measurements of different functional materials, represented by two commercially available conductive screen-printable dispersions of PEDOT:PSS (Clevios S V3 and Orgacon EL-P 3040) and conductive silver ink CI-1001. The two different PEDOT:PSS based conductive dispersions are compared as well.
  • The main parameters, which may influence the resulting quality of the printed functional layers, are the thickness and the layer homogeneity. For evaluation of these parameters, currently, different methods can be used. However some of these methods may have various drawbacks and therefore new methods are still being searched and developed. The layer thickness can be determined by mechanical (or optical) profilometers. Another approach is represented by using the spectroscopic methods, e.g. UV-VIS or the photoacoustics. After some promising results have been received during the first photoacoustic measurements of spiral coated functional layers, further measurements have been carried out to prove the capability of this method for the evaluation of layer thickness with the screen printed transparent PEDOT:PSS based conductive polymer layers and also silver based conductive composite inks. As the substrate material, flexible polymer foil was used. This paper discusses the progress in photoacoustic measurements of different functional materials, represented by two commercially available conductive screen-printable dispersions of PEDOT:PSS (Clevios S V3 and Orgacon EL-P 3040) and conductive silver ink CI-1001. The two different PEDOT:PSS based conductive dispersions are compared as well. (en)
Title
  • Photoacoustic Measurement of Screen-Printed Conductive Layers
  • Photoacoustic Measurement of Screen-Printed Conductive Layers (en)
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  • Photoacoustic Measurement of Screen-Printed Conductive Layers
  • Photoacoustic Measurement of Screen-Printed Conductive Layers (en)
skos:notation
  • RIV/00216275:25310/12:39895745!RIV13-MPO-25310___
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  • P(FR-TI1/144), S, Z(MSM0021627501)
http://linked.open...vai/riv/dodaniDat
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  • 158530
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  • RIV/00216275:25310/12:39895745
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  • Conducting Polymers, Screen-printing, Photoacoustics, PEDOT:PSS (en)
http://linked.open.../riv/klicoveSlovo
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  • [FC125F27D54B]
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  • Ljubljana
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  • Darmstadt
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  • Advances in Printing Media Technology
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  • Kaplanová, Marie
  • Syrový, Tomáš
  • Peřinka, Nikola
  • Držková, Markéta
  • Syrová, Lucie
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number of pages
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  • IARIGAI (International Association of Research Organizations for the Information, Media and Graphic Arts Industries)
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  • 978-3-9812704-5-7
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  • 25310
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