Monolithically printed all-organic flexible photosensor active matrix

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作者
Luis Arturo Ruiz‐Preciado
Sanghoon Baek
Noah Strobel
Kai Xia
Mervin Seiberlich
Sung-min Park
Uli Lemmer
Sungjune Jung
Gerardo Hernandez-Sosa
机构
[1] Karlsruhe Institute of Technology,Light Technology Institute
[2] InnovationLab,Department of Convergence IT Engineering
[3] Pohang University of Science and Technology,Institute of Microstructure Technology
[4] Karlsruhe Institute of Technology,Department of Materials Science and Engineering
[5] Pohang University of Science and Technology,undefined
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Upcoming technologies in the fields of flexible electronics require the cost-efficient fabrication of complex circuitry in a streamlined process. Digital printing techniques such as inkjet printing can enable such applications thanks to their inherent freedom of design permitting the mask-free deposition of multilayer optoelectronic devices without the need for subtracting techniques. Here we present an active matrix sensor array comprised of 100 inkjet-printed organic thin film transistors (OTFTs) and organic photodiodes (OPDs) monolithically integrated onto the same ultrathin substrate. Both the OTFTs and OPDs exhibited high-fabrication yield and state-of-the-art performance after the integration process. By scaling of the OPDs, we achieved integrated pixels with power consumptions down to 50 nW at one of the highest sensitivities reported to date for an all-organic integrated sensor. Finally, we demonstrated the application potential of the active matrix by static and dynamic spatial sensing of optical signals.
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