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Meeting 2022 TMS Annual Meeting & Exhibition
Symposium 2D Materials – Preparation, Properties & Applications
Presentation Title Novel approach to produce thick CNT based Bucky paper for Radar Absorption and EMI Shielding Applications
Author(s) Syed Mohammed Sajl, Rajakumar Devarapalli, Daniel Choi, Shaohong Luo
On-Site Speaker (Planned) Syed Mohammed Sajl
Abstract Scope Bucky papers with thickness of more 400 μm are very important for many applications such as Radar Absorbing Materials (RAM), Electromagnetic interference shielding (EMI), super-capacitors and lithium-ion battery (LIB). CNT Buckypaper is a thin sheet made from an aggregate of carbon nanotubes. Literature studies show the thickness of single bucky paper produced by film casting method is in the range of 40-100 μm1. This study shares the preliminary work carried as an attempt to produce super-thick bucky papers by film casting process. This particular Buckypaper has been observed to show improved EMI Shielding and RAM Properties.
Proceedings Inclusion? Planned:
Keywords Nanotechnology, Composites, Process Technology

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High Throughput Computational Investigation of Two Dimensional Ferroelectric Materials for Photocatalytic Applications
Immobilization of Glycine molecules on Graphene Oxide for Enhanced Piezoelectricity
Novel approach to produce thick CNT based Bucky paper for Radar Absorption and EMI Shielding Applications
Novel Approach to Wafer Scale Integration of Graphene and h-BN Related 2-D Materials
Preparation and Electro-sorption Performance of Lotus Petiole-Based Activated Carbon
Raman and Transport Characterization of Semiconducting and Superconducting Selenide-based Transition Metal Dichalcogenides
Rapid Exfoliation of Low-defectivity Graphene in Alkali Lignin Aqueous Media
Structural Phase Transition and Pseudoelastic Behavior in Strained Monolayer Molybdenum Ditelluride (MoTe2 )
Synthesis and Characterization of Laser-Induced Graphene for Gas Sensing Applications
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