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Simulation study of junctionless silicon nanoribbon FET for high-performance printable electronics.

, , , and . ECCTD, page 1-4. IEEE, (2017)

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Energy Generating Electronic Skin With Intrinsic Tactile Sensing Without Touch Sensors., , , , and . IEEE Trans. Robotics, 37 (2): 683-690 (2021)Fingerprint-Enhanced Capacitive-Piezoelectric Flexible Sensing Skin to Discriminate Static and Dynamic Tactile Stimuli., and . Adv. Intell. Syst., 1 (7): 1900051 (2019)Modelling of nanowire FETs based neural network for tactile pattern recognition in E-skin., , , , , , , , and . BioCAS, page 572-575. IEEE, (2016)Live demonstration: Energy autonomous electronic skin for robotics., , , and . IEEE SENSORS, page 1. IEEE, (2017)Transforming the short-term sensing stimuli to long-term e-skin memory., , , , and . IEEE SENSORS, page 1-3. IEEE, (2017)Multi-Material 3D Printed Bendable Smart Sensing Structures., , , and . IEEE SENSORS, page 1-4. IEEE, (2018)Prosthetic Hand with Biomimetic Tactile Sensing and Force Feedback., , and . ISCAS, page 1-4. IEEE, (2019)Flexible Logic Circuits by using Van Der Waals Contacted Graphene Field-Effect Transistors., , , and . ISCAS, page 1-5. IEEE, (2019)Tactile Communication System for the Interaction between Deafblind and Robots., , , , and . RO-MAN, page 416-421. IEEE, (2018)New materials and advances in making electronic skin for interactive robots., , , , , , , , , and 2 other author(s). Adv. Robotics, 29 (21): 1359-1373 (2015)