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Fully-printed, all-polymer, bendable and highly transparent complementary logic circuits
Mandal, S.,Dell'Erba, G.,Luzio, A.,Bucella, S.G.,Perinot, A.,Calloni, A.,Berti, G.,Bussetti, G.,Duo, L.,Facchetti, A.,Noh, Y.Y.,Caironi, M. Elsevier Science 2015 ORGANIC ELECTRONICS Vol.20 No.-
In this contribution we show a simple approach for the development of all-polymer based complementary logic circuits fabricated by printing on plastic, at low temperature and in ambient conditions. This is achieved by patterning, with a bottom-up approach, solely synthetic carbon-based materials, thus incorporating earth-abundant elements and enabling in perspective the recycling - a critical aspect for low-cost, disposable electronics. Though very simple, the approach leads to logic stages with a delay down to 30μs, the shortest reported to date for all-polymer circuits, where each single component has been printed. Moreover, our circuits combine bendability and high transparency, favoring the adoption in several innovative applications for portable and wearable large-area electronics.
Mode matching telescope design and simulation for the EPR-SIPS experiment
Sumin Lee,Chang Hee Kim,Jimin Han,Sibilla Di Pace,V Sequino,Yunjong Kim,Changgon Kim,Hojae Ahn,Soojong Pak,Sungho Lee,Jaewan Kim,M Bawaj,M Barsuglia,M Bazzan,E Calloni,G Ciani,L Conti,B D’Angelo,M De 한국천문학회 2022 天文學會報 Vol.47 No.1