Journal of Science Advanced Materials and Devices · 2020 · 16 citations · 147 references
Materials ScienceEngineeringSoft RoboticsFlexible ElectronicsMicrofabricationFlexible Manufacturing TechnologyHandwritingMechanical EngineeringHandwriting TechniqueFabrication TechniquePrinted ElectronicsElectronic PackagingTechnology3D PrintingFlexible Sensor
Flexible electronics are excepted to be an important support for the next electronic age, and their quick, cost-effective, and easily realized fabrication is a key motivating factor to the on-going and future applications. The fabrication technique derived from day-to-day handwriting has prompted the advancement of producing flexible electronics with readily available, low-cost and user-friendly tools. Combined advances in materials science, mechanical engineering, and electrical engineering strengthen this method in implementing electronic components, circuits, sensors, and energy devices. This review focuses on the milestones and recent achievements of handwriting flexible electronics, concerning the available tools, writing mechanisms, involved materials, and emerging applications. On account of the merits and demerits of the handwriting technique, discussions and conclusions about the superiorities, possible usages, challenges and predictions are also presented.
147
Conductive Nanomaterials for Printed Electronics
Alexander Kamyshny, Shlomo Magdassi · Small · 2014 · 874 citations
Materials Science, Graphene Nanomeshes, Electrical Engineering +14
Flexible Electronics: Stretchable Electrodes and Their Future
Siya Huang, Yuan Liu, Yüe Zhao et al. · Advanced Functional Materials · 2018 · 826 citations · Full text
Engineering, Engineering Of Soft Materials, Biomedical Engineering +19
Pen‐on‐Paper Flexible Electronics
Analisa Russo, Bok Yeop Ahn, Jacob J. Adams et al. · Advanced Materials · 2011 · 687 citations