Organic electronics: pioneering the future of sustainable and flexible technology. [PDF]
Bouachrine M, Ayachi S.
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New biphenylvinylanthracene-based polymers for organic electronics applications: effect of the acceptor group on optoelectronic properties. [PDF]
Zrida H +6 more
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Novel Organosilicon Tetramers with Dialkyl-Substituted [1]Benzothieno[3,2-b]benzothiophene Moieties for Solution-Processible Organic Electronics. [PDF]
Gudkova IO +7 more
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Breath figure-derived porous semiconducting films for organic electronics. [PDF]
Zhang X +9 more
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Liquid Printing in Nanochitin Suspensions: Interfacial Nanoparticle Assembly Toward Volumetric Elements, Organic Electronics and Core-Shell Filaments. [PDF]
Panahi-Sarmad M +9 more
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Innovative Application of Salophen Derivatives in Organic Electronics as a Composite Film with a Poly(3,4-Ethylenedioxythiophene)-poly(styrenesulfonate) Matrix. [PDF]
Sánchez Vergara ME +5 more
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Synthesis of New Ruthenium Complexes and Their Exploratory Study as Polymer Hybrid Composites in Organic Electronics. [PDF]
Ballinas-Indilí R +6 more
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Protein Assays on Organic Electronics: Rational Device and Material Designs for Organic Transistor-Based Sensors. [PDF]
Minamiki T +4 more
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Toward Biomass-Based Organic Electronics: Continuous Flow Synthesis and Electropolymerization of N-Substituted Pyrroles. [PDF]
Frasca S +4 more
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Polymeric piezoelectric accelerometers with high sensitivity, broad bandwidth, and low noise density for organic electronics and wearable microsystems. [PDF]
Ge C, Cretu E.
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