Jonathan Merten
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: University of Florida (2009–2014)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Jonathan Merten's research interests include laser-induced plasma, atomic absorption spectroscopy, and mass spectrometry techniques. He has investigated the time-resolved absolute mass of yttrium laser-induced plasma and the comparison of atomized mass and crater volume in laser ablation. His work also extends to the development of novel chemical compounds, such as 4-[2-[3,5-Bis(trifluoromethyl)anilino]thiazolo-4-yl]phenol, as dual inhibitors for bacterial infections. Merten's scholarship is reflected in his h-index of 8 and over 20 publications. He has collaborated with researchers at Arkansas State University, including Shealyn Chestnut, Shawnda Ethridge, and Hannah Bariola.
Metrics
- h-index: 8
- Publications: 20
- Citations: 205
Selected Publications
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Design, Synthesis, and Development of 4-[2-[3,5-Bis(trifluoromethyl)anilino]thiazolo-4-yl]phenol as a Dual Inhibitor of Fatty Acid Biosynthesis (FASII) to Clear MRSA Infection (2026)
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Comparison of atomized mass and crater volume in laser ablation (2025)
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Time-resolved absolute mass of yttrium laser-induced plasma (2023)
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Following laser-induced plasma stoichiometry with atomic absorption spectroscopy (2022)
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Laser-ablation absorption spectroscopy: Reviewing an uncommon hyphenation (2022)
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Line-narrowed argon fluoride LA-LEAF for trace arsenic analysis (2019)
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Massing a laser-induced plasma with atomic absorption spectroscopy (2018)
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Laser continuum source atomic absorption spectroscopy: Measuring the ground state with nanosecond resolution in laser-induced plasmas (2017)
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Argon fluoride LA-LEAF for rapid arsenic quantitation (2017)
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Differential Spectral Imaging of the CN Violet Band in Laser-Induced Plasmas on TNT Simulant Molecules (2014)
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Carbon Swan Spectra Measurements following Breakdown of Nitro Compound Explosive Simulants (2014)
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Standoff Methods for the Detection of Threat Agents: A Review of Several Promising Laser-Based Techniques (2014)
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Optimizing gated detection in high-jitter kilohertz powerchip laser-induced breakdown spectroscopy (2013)
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Spatiotemporal evolution of plasma molecular emission following laser ablation of explosive analogs (2013)
Collaboration Network
Top Collaborators
- Following laser-induced plasma stoichiometry with atomic absorption spectroscopy
- Time-resolved absolute mass of yttrium laser-induced plasma
- Comparison of atomized mass and crater volume in laser ablation
- Following laser-induced plasma stoichiometry with atomic absorption spectroscopy
- Time-resolved absolute mass of yttrium laser-induced plasma
- Following laser-induced plasma stoichiometry with atomic absorption spectroscopy
- Time-resolved absolute mass of yttrium laser-induced plasma
- Following laser-induced plasma stoichiometry with atomic absorption spectroscopy
- Time-resolved absolute mass of yttrium laser-induced plasma
- Following laser-induced plasma stoichiometry with atomic absorption spectroscopy
- Following laser-induced plasma stoichiometry with atomic absorption spectroscopy
- Following laser-induced plasma stoichiometry with atomic absorption spectroscopy
- Time-resolved absolute mass of yttrium laser-induced plasma
- Comparison of atomized mass and crater volume in laser ablation
- Comparison of atomized mass and crater volume in laser ablation
- Design, Synthesis, and Development of 4-[2-[3,5-Bis(trifluoromethyl)anilino]thiazolo-4-yl]phenol as a Dual Inhibitor of Fatty Acid Biosynthesis (FASII) to Clear MRSA Infection
- Design, Synthesis, and Development of 4-[2-[3,5-Bis(trifluoromethyl)anilino]thiazolo-4-yl]phenol as a Dual Inhibitor of Fatty Acid Biosynthesis (FASII) to Clear MRSA Infection
- Design, Synthesis, and Development of 4-[2-[3,5-Bis(trifluoromethyl)anilino]thiazolo-4-yl]phenol as a Dual Inhibitor of Fatty Acid Biosynthesis (FASII) to Clear MRSA Infection
- Design, Synthesis, and Development of 4-[2-[3,5-Bis(trifluoromethyl)anilino]thiazolo-4-yl]phenol as a Dual Inhibitor of Fatty Acid Biosynthesis (FASII) to Clear MRSA Infection
- Design, Synthesis, and Development of 4-[2-[3,5-Bis(trifluoromethyl)anilino]thiazolo-4-yl]phenol as a Dual Inhibitor of Fatty Acid Biosynthesis (FASII) to Clear MRSA Infection
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