James Ethan Batey
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Teaching Assistant
Also affiliated: Iowa State University (2024); Ames National Laboratory (2025)
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
James Ethan Batey's research focuses on the development and application of advanced microscopy techniques for high-throughput biological and materials science investigations. His work has involved developing methods for ultrahigh-throughput single-particle hyperspectral imaging, particularly with gold nanoparticles. Batey has also contributed to the advancement of spectrally resolved super-resolution fluorescence microscopy, enhancing photon usage for improved imaging capabilities. His recent publications explore the application of these techniques to map lipid membrane polarity with single-molecule sensitivity and to study the assembly of nanoparticles, investigating the influence of factors such as grafting density. Batey has collaborated extensively with researchers at the University of Arkansas at Fayetteville, including Meek Yang, Elric Dion Pott, Bin Dong, and Joie Embree, with whom he shares multiple publications.
Metrics
- h-index: 4
- Publications: 11
- Citations: 32
Positions
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Teaching Assistant 2025–presentMassachusetts Institute of Technology Department of Chemistry ORCID
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Teaching Assistant publications 2023–2026University of Arkansas at Fayetteville ORCID
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Undergraduate Researcher 2022–2025University of Arkansas at Fayetteville Dept. of Chemistry and Biochemistry ORCID
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Research Assistant 2024Ames National Laboratory ORCID
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SI Leader 2021–2022University of Arkansas Chemistry and Biochemistry ORCID
Selected Publications
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High-Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM (2026)
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Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity (2025)
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Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity (2025)
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High Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM (2025)
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Effect of grafting density on the two-dimensional assembly of nanoparticles (2025)
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Effect of Grafting Density on the Two-Dimensional Assembly of Nanoparticles (2024)
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High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage (2024)
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Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput (2024)
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Automated Five-Dimensional Single Particle Tracking by Bifocal Parallax Dark-Field Microscopy with Electronic Tunable Lens (2023)
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Ultrahigh-Throughput Single-Particle Hyperspectral Imaging of Gold Nanoparticles (2023)
Collaboration Network
Top Collaborators
- Ultrahigh-Throughput Single-Particle Hyperspectral Imaging of Gold Nanoparticles
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- High-Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- Automated Five-Dimensional Single Particle Tracking by Bifocal Parallax Dark-Field Microscopy with Electronic Tunable Lens
Showing 5 of 8 shared publications
- Ultrahigh-Throughput Single-Particle Hyperspectral Imaging of Gold Nanoparticles
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- High-Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- Automated Five-Dimensional Single Particle Tracking by Bifocal Parallax Dark-Field Microscopy with Electronic Tunable Lens
Showing 5 of 8 shared publications
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- High-Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- High Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
Showing 5 of 6 shared publications
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- High-Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- High Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- Ultrahigh-Throughput Single-Particle Hyperspectral Imaging of Gold Nanoparticles
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- Effect of grafting density on the two-dimensional assembly of nanoparticles
- Effect of Grafting Density on the Two-Dimensional Assembly of Nanoparticles
- Effect of grafting density on the two-dimensional assembly of nanoparticles
- Effect of Grafting Density on the Two-Dimensional Assembly of Nanoparticles
- Effect of grafting density on the two-dimensional assembly of nanoparticles
- Effect of Grafting Density on the Two-Dimensional Assembly of Nanoparticles
- Effect of grafting density on the two-dimensional assembly of nanoparticles
- Effect of Grafting Density on the Two-Dimensional Assembly of Nanoparticles
- Effect of Grafting Density on the Two-Dimensional Assembly of Nanoparticles
- Effect of Grafting Density on the Two-Dimensional Assembly of Nanoparticles
- Effect of Grafting Density on the Two-Dimensional Assembly of Nanoparticles
- Effect of grafting density on the two-dimensional assembly of nanoparticles
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