
PME - Printed and Molecular Electronics
@caironipme
Mario Caironi's group @IIT, from fundamentals of organic and hybrid semiconductors to printed large area devices and edible electronics.
ID: 1256842070964293633
https://www.iit.it/research/lines/printed-and-molecular-electronics 03-05-2020 07:05:05
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Check out our work with Iain McCulloch and PME - Printed and Molecular Electronics. We designed #OFET device architectures that are less sensitive to contact effects and developed high-performance all-organic, all-printed #OTFTs on flexible substrates. #DeacCluster doi.org/10.1002/adma.2…


🙌Exciting first day at #CyBioEl24 nanoGeConferences with talks on bioelectronic medicine, novel in vitro platforms and drug delivery among other topics 📸Attendees have gathered for a group photo with Limassol as a stunning backdrop! 🔗More information: nanoge.org/CyBioEl/home



PhD call open! We offer a scholarship at "Politecnico di Milano" for Edible Electronic Devices and Sensors - call id: 4693-4079 dottorato.polimi.it/en/futuri-dott… deadline: November the 25th - starting date: December the 13th IIT European Research Council (ERC) ELFO - Electronic Food




See our new perspective paper on Transient and Edible Robots😋🤖in Cell Press Devices, doi.org/10.1016/j.devi…. Well done Qiukai Qi and all! PME - Printed and Molecular Electronics IIT RoboFood EPFL Wageningen U&R





Just published! Noemì Contreras developed an edible conductive glue that will help us assemble future edible electronic systems. Thanks to all the collaborators @CataldiLab Valerio Annese IIT ELFO - Electronic Food onlinelibrary.wiley.com/doi/10.1002/sm…



📢The concluding chapter of Nathan Pataki PhD in the HORATES Innovative Training Network project, in collaboration with Shubhradip Guchait, Martin Brinkmann's group, a design and process to exploit aligned polymers in application-oriented thermoelectric devices onlinelibrary.wiley.com/doi/10.1002/ae… IIT Marie Skłodowska-Curie Actions




Despite what often reported in literature, n-type doping of the well known naphthalene diimide-bithiophene co-polymer by 1H-benzimidazoles IS NOT a thermally activated process. The activation may derive from a solid-state conformational effect. advanced.onlinelibrary.wiley.com/doi/10.1002/ad…

An edible electrochemical transistor from the coloring crystals in toothpaste! Here Alessandro Luzio describe a method to process copper phthalocyanine from solution to realize safe-to-ingest transistors with volumetric capacitance. European Research Council (ERC) IIT advanced.onlinelibrary.wiley.com/doi/10.1002/ad…
