Rachael L. Myers-Ward, Ph.D.
Affiliations: | 2006 | University of South Florida, Tampa, FL, United States |
Area:
Electronics and Electrical EngineeringGoogle:
"Rachael Myers-Ward"Mean distance: (not calculated yet)
Parents
Sign in to add mentorStephen E. Saddow | grad student | 2006 | University of South Florida | |
(High growth rate silicon carbide CVD via hot-wall epitaxy.) |
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Publications
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Sharma S, Myers-Ward RL, Gaskill KD, et al. (2023) Ultrafast hot-carrier cooling in quasi freestanding bilayer graphene with hydrogen intercalated atoms. Nanoscale Advances. 5: 485-492 |
Qiao K, Liu Y, Kim C, et al. (2021) Graphene Buffer Layer on SiC as a Release Layer for High-Quality Freestanding Semiconductor Membranes. Nano Letters |
Shriver-Lake LC, Myers-Ward RL, Dean SN, et al. (2020) Multilayer Epitaxial Graphene on Silicon Carbide: A Stable Working Electrode for Seawater Samples Spiked with Environmental Contaminants. Sensors (Basel, Switzerland). 20 |
Kotsakidis JC, Grubišić-Čabo A, Yin Y, et al. (2020) Freestanding n-Doped Graphene via Intercalation of Calcium and Magnesium into the Buffer Layer–SiC(0001) Interface Chemistry of Materials. 32: 6464-6482 |
Ulstrup S, Giusca CE, Miwa JA, et al. (2019) Nanoscale mapping of quasiparticle band alignment. Nature Communications. 10: 3283 |
Pennachio DJ, Ornelas-Skarin CC, Wilson NS, et al. (2019) Tailoring commensurability of hBN/graphene heterostructures using substrate morphology and epitaxial growth conditions Journal of Vacuum Science & Technology A. 37: 051503 |
Jadidi MM, Daniels KM, Myers-Ward RL, et al. (2019) Optical Control of Plasmonic Hot Carriers in Graphene Acs Photonics. 6: 302-307 |
Pavunny SP, Myers-Ward RL, Daniels KM, et al. (2019) On the doping concentration dependence and dopant selectivity of photogenerated carrier assisted etching of 4H–SiC epilayers Electrochimica Acta. 323: 134778 |
El Fatimy A, Han P, Quirk N, et al. (2019) Effect of defect-induced cooling on graphene hot-electron bolometers Carbon. 154: 497-502 |
DeJarld M, Campbell PM, Friedman AL, et al. (2018) Surface potential and thin film quality of low work function metals on epitaxial graphene. Scientific Reports. 8: 16487 |