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By Donald Lupo, Wolfgang Clemens, Sven Breitung (auth.), Eugenio Cantatore (eds.)
Organic and published electronics can let a revolution within the purposes of electronics and this booklet bargains readers an summary of the cutting-edge during this speedily evolving area. the possibly least expensive, compatibility with versatile substrates and the wealth of units that symbolize natural and published electronics will make attainable purposes that cross a ways past the well known monitors made with large-area silicon electronics. given that natural electronics are nonetheless of their early level, present process transition from lab-scale and prototype actions to construction, this ebook serves as a worthy photo of the present panorama of the several units enabled via this know-how, reviewing all functions which are constructing and people should be foreseen.
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Extra resources for Applications of Organic and Printed Electronics: A Technology-Enabled Revolution
The target is to achieve a layer with a designated film thickness. In almost the same manner to spin coating, the designated film thickness is a result of the ink properties as well as the blading parameters such as slit height between substrate and knife, volume of the solution that is applied in the slit, temperature control of the substrate, and blading speed. This blading method is a large-area coating technique resulting in lateral resolutions in the sub-millimeter regime and in low material waste.
Organic Electronics (2006) 1st edn VDMA Verlag GmbH, Frankfurt am Main, Germany 17. Wikipedia. org/wiki/PEDOT:PSS. Accessed 2011 18. Wikipedia. org/wiki/P3HT. Accessed 2011 19. Wikipedia. org/wiki/Pentacene. Accessed 2011 20. Llorente GR, Dufourg-Madec M-B, Crouch DJ, Pritchard RG, Ogier S, Yeates SG (2009) High performance, acene-based organic thin film transistors. Chem Commun 21:3059 21. Park S-J, Jeong JK, Mo Y-G, Kim S (2009) Impact of high-k TiOx dielectric on device performance of indium-gallium-zinc oxide transistors.
The spin coated and doctor bladed devices based on pristine o-xylene solvent investigated in  and Fig. 3 show similar n, but different J0, which may indicate different quality of the interfaces in the different processing techniques . The reduction in J0 in bladed devices determines a slight increase in open circuit voltage (by 30–40 mV) and thus a slight PCE enhancement . The distinct drying kinetics of the wet film processed by spin coating or doctor blading leads to different solid-state morphologies, without losing performance.
Applications of Organic and Printed Electronics: A Technology-Enabled Revolution by Donald Lupo, Wolfgang Clemens, Sven Breitung (auth.), Eugenio Cantatore (eds.)