![]() A silver neodecanoate/bismuth 2-ethylhexanoate mixture has given the best results in both single and double layer applications. Adherent and conductive films were achieved. Mod silver metallization: Screen printing and ink-jet printingīasic material efforts have proven to be very successful. TFTs with mobility values of âˆ❂5 cm 2 V -1 s -1 and current on/off ratios >10 4 were obtained, performance similar to that of evaporated metal contacts in analogous devices. An inkjet formulation is also used to print top source/drain contacts and demonstrate printed high-mobility thin film transistors (TFTs) based on semiconducting single-walled carbon nanotubes. Thin, screen-printed traces with exceptional electrical (molecular ink platform enables an aerosol jet-compatible ink that yields conductive features on glass with 2Ã- bulk resistivity and strong adhesion to various plastic substrates. A simple formulation comprising silver neodecanoate, ethyl cellulose, and solvent provides improved performance versus that of established inks, yet with improved economics. ![]() Kell, Arnold J Paquet, Chantal Mozenson, Olga Djavani-Tabrizi, Iden Deore, Bhavana Liu, Xiangyang Lopinski, Gregory P James, Robert Hettak, Khelifa Shaker, Jafar Momciu, Adrian Ferrigno, Julie Ferrand, Olivier Hu, Jian Xiong Lafrenière, Sylvie Malenfant, Patrick R LĪ silver molecular ink platform formulated for screen, inkjet, and aerosol jet printing is presented. ![]() Versatile Molecular Silver Ink Platform for Printed Flexible Electronics. ![]()
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