Richard Philip Taylor
Affiliations: | 1999- | Physics | University of Oregon, Eugene, OR, United States |
Area:
Nanoelectronics, retinal implants, solar cells, visual science of fractalsWebsite:
https://physics.uoregon.edu/profile/rpt/Google:
"Richard Philip Taylor" OR "Richard P Taylor"Bio:
https://blogs.uoregon.edu/richardtaylor/
https://scholar.google.com/citations?user=dreqmHgAAAAJ&hl=en
https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.233713
Mean distance: (not calculated yet)
Children
Sign in to add traineeColleen Marlow | grad student | 2005 | University of Oregon (MathTree) |
Jason E. Matthews | grad student | 2011 | University of Oregon |
Rick D. Montgomery | grad student | 2014 | University of Oregon |
Ian Pilgrim | grad student | 2014 | University of Oregon |
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Publications
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Browning LA, Watterson W, Happe E, et al. (2021) Investigation of Fractal Carbon Nanotube Networks for Biophilic Neural Sensing Applications. Nanomaterials (Basel, Switzerland). 11 |
Roe ET, Bies AJ, Montgomery RD, et al. (2020) Fractal solar panels: Optimizing aesthetic and electrical performances. Plos One. 15: e0229945 |
Watterson WJ, Montgomery RD, Taylor RP. (2018) Modeling the Improved Visual Acuity Using Photodiode Based Retinal Implants Featuring Fractal Electrodes. Frontiers in Neuroscience. 12: 277 |
Watterson WJ, Montgomery RD, Taylor RP. (2017) Fractal Electrodes as a Generic Interface for Stimulating Neurons. Scientific Reports. 7: 6717 |
Taylor RP, Martin TP, Montgomery RD, et al. (2017) Seeing shapes in seemingly random spatial patterns: Fractal analysis of Rorschach inkblots. Plos One. 12: e0171289 |
Marlow CA, Viskontas IV, Matlin A, et al. (2015) Temporal Structure of Human Gaze Dynamics Is Invariant During Free Viewing. Plos One. 10: e0139379 |
Chamousis RL, Chang L, Watterson WJ, et al. (2014) Effect of fractal silver electrodes on charge collection and light distribution in semiconducting organic polymer films Journal of Materials Chemistry A. 2: 16608-16616 |
Micolich AP, See AM, Scannell BC, et al. (2013) Is it the boundaries or disorder that dominates electron transport in semiconductor 'billiards'? Fortschritte Der Physik. 61: 332-347 |
See AM, Pilgrim I, Scannell BC, et al. (2012) Impact of small-angle scattering on ballistic transport in quantum dots. Physical Review Letters. 108: 196807 |
Scannell BC, Pilgrim I, See AM, et al. (2012) Probing the sensitivity of electron wave interference to disorder-induced scattering in solid-state devices Physical Review B - Condensed Matter and Materials Physics. 85 |