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Meeting 2016 TMS Annual Meeting & Exhibition
Symposium Recent Advancement on Stretchable and Wearable Electronics
Presentation Title Silver Nanowire Networks for Flexible Electromagnetic Interface Shields
Author(s) Ece Alpugan, Sahin Coskun, Arcan Fehmi Dericioglu, Husnu Emrah Unalan
On-Site Speaker (Planned) Husnu Emrah Unalan
Abstract Scope Development of electromagnetic technology increased the importance of electromagnetic interference shielding (EMI), which can be realized by the reflection and/or absorption of electromagnetic radiation by the shielding materials [1]. In case of reflection, conductive materials are used as shields due to their mobile charge carriers, which interact with the incident electromagnetic field. One of the most electrically conductive metals is silver (Ag). Due to its superior properties in bulk, nanostructures of silver and in particular nanowires have received remarkable attention. In this work, EMI shielding properties of Ag nanowire networks on flexible polyethyleneterephthalate (PET) substrates were investigated. EMI shielding properties of Ag NWs at high frequency range (18-40 GHz) were investigated. Ag NWs showed increasing microwave reflectance with the increase in the nanowire density. The effect of nanowire density on the shielding effectiveness of the networks in conjunction with their optical transmittance were investigated.
Proceedings Inclusion? Planned: TMS Journal: Journal of Electronic Materials

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

3D Printing Liquid Metals at Room Temperature for Fabrication of Functional, Stretchable, and Soft Electronics
A New Architecture for Flexible Large-area Electronic Systems
B-1: Printing of Graphene-coated Copper Nano-ink on Flexible Substrate Using Light Sintering Method
DFT Approach to Electronic and Optical Properties of Foldable and Stretchable Graphene
Flexible Copper Clad Laminate prepared by Roll-to-Roll Additive Manufacturing
Inkjet Printed Metal Oxide Thin Film Transistors
Laser Writing and Photonic Reduction of High Performance Supercapacitors on Flexible Substrates
Materials Integration for Flexible Electronics: Cu-interconnects, Supercapacitors
Mechanical Stability of Printed Metallizations on Polymer Substrates
New Paradigms for Enabling Printing of Flexible Optoelectronics through Engineered Metal-organic Inks and Direct Writing
Post Processing and In Situ Processing for Low Thermal Budget Integration of Electronic Materials on Flexible Substrates
RF Devices based on 2D Materials for Flexible and Wearable Electronics
Self-sensing Ionic Polymer-metal Composite Soft Robotic Actuator Integrated with Gallium-indium Alloy
Silver Nanowire Networks for Flexible Electromagnetic Interface Shields
Ultrasonic Spray Printing for High-performance Flexible Organic Field-effect Transistors and Hybrid Perovskite Solar Cells
Wearable Energy Storage Devices from Cotton T-shirts
Wireless Gas Sensing with NFC-enabled Mobile Device

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