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Meeting MS&T23: Materials Science & Technology
Symposium Mesoscale Phenomena in Functional Polycrystals and Their Nanostructures
Presentation Title Enhanced Electron Transport in Metal-Carbon Composites
Author(s) Kishor Nepal, Chinonso Ephraim Ugwumadu, Keerti Sahithi Kappagantula, David Drabold
On-Site Speaker (Planned) Kishor Nepal
Abstract Scope We explore ultra-conducting behavior in metal composites with graphene and graphene-like additives using ab initio density functional theory. As we have seen in previous work, the judicious addition of graphene leads to an enhanced density of states at the Fermi level, which is probably the origin of the observed conduction improvement in copper-graphene composites [1]. We report the mechanical and electronic properties of other carbon composite systems involving aluminum, silver, and gold. We also explore the effect of variants of graphene, such as amorphous graphene, and graphene with impurities including oxygen and nitrogen to better understand the electrical transport in such composites. To visualize the conduction, we employed the Space Projected Conductivity (SPC) [2]. References: 1. K. Subedi, K. Nepal, C. Ugwumadu, K. Kappagantula, and D. A. Drabold, Applied Physics Letters 122 031903 (2023). 2. K. Subedi, K. Prasai, and D. A. Drabold, Physica Status Solidi B 2000438 (2020).

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Acoustic Phonon Spectra Modification and Light Emission Properties of Rare Earth Doped Polycrystalline Alumina
Bidirectional Dynamic Mechanical Writing of Polar Bubbles
Causality and Machine Learning Models of Ferroics From Atomistic Simulations
Characterization of Phase and Domain Switching in Sn-doped BCZT Piezoceramics with Large Electromechanical Strains
Computer Simulation as a Tool to Optimize Electronic Conduction.
D-17: Alchemy of Graphite: The Many Faces of Coal
D-18: High-throughput Approach for Predicting Optical Properties of Crystals
D-19: Numerical Analysis of the Influence of the Second-phase Particle Morphology on the Alloy Microstructure Evolution
Enhanced Electron Transport in Metal-Carbon Composites
Heat-assisted Ferroelectric Reading for High Speed Ultrahigh-density Ferroelectric Data Storage
Hierarchical Ceramic Composites for Ultra-high Temperature Applications
Liquid Crystalline Diffractive Waveplates: Ultrathin, Planar Optics
Mesoscale Dipoles via Strain Induced Correlations in an Atomic-layer Superlattice
Modeling Local Dielectric Dispersion in Ferroelectric BaTiO3 with Domain Walls
Modeling Thermoelectric Figure of Merit in Complex Materials at Mesoscale
Optical Behavior and Electro-optic Performance in Fine Grained Lead-free Ceramics
Optical Properties of Chalcophosphate Materials in the Visible and Infrared Range
Strain-tuned Quantum Materials
Structure Property Relationships in Complex, Multi-phase, Polycrystalline Materials

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