Vincent L. Chevrier
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
President, Co-Founder
Also affiliated: Centre National de la Recherche Scientifique (1994–2025); Dalhousie University (2006–2011); Institut national de recherche en sciences et technologies du numérique (2002–2018); 3M (United States) (2012–2018); University of Ottawa (2004); Laboratoire de Chimie Moléculaire (1996); Institut de Chimie de la Matière Condensée de Bordeaux (2004); Centre de Recherche en Informatique (1993); Centre for Artificial Intelligence and Robotics (2016); Laboratoire Lorrain de Recherche en Informatique et ses Applications (1998–2025); Centre Inria de l'Université de Lorraine (2011–2013); Laboratoire de Chimie (1994); Électricité de France (France) (2015); Teer Coatings (United Kingdom) (2017–2022); Massachusetts Institute of Technology (2010–2013); Université de Lorraine (2002–2025)
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Vincent L. Chevrier's research interests encompass materials science, particularly in the context of energy storage and planetary exploration. He has investigated materials for lithium-ion and sodium-ion batteries, focusing on negative electrode alloys and the voltage and stability differences between these battery types. His work also includes computational materials science, utilizing hybrid density functional calculations to study the redox potentials and formation energies of transition metal compounds.
Beyond energy storage, Chevrier's research extends to astrobiology and planetary science, with a focus on Mars. He has analyzed conditions relevant to microbial viability in Martian "special regions" and transient liquid water environments, such as those observed at Gale Crater. His scholarly output includes a significant number of publications, an h-index of 28, and over 12,000 citations, designating him as a highly cited researcher. He maintains an active lab website and leads a research group at the University of Arkansas at Fayetteville, collaborating with colleagues such as Alec Fitting and Woodrow Gilbertson.
Metrics
- h-index: 28
- Publications: 169
- Citations: 12,076
Positions
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President, Co-Founder 2021–presentCalumix Technologies Inc. ORCID
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Partner 2021–presentCyclikal LLC ORCID
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President, Co-Founder publications 2025University of Arkansas at Fayetteville ORCID
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CTO 2021–2024Trion Energy Solutions ORCID
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Research Specialist 2010–20213M CRML ORCID
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Postdoctoral Associate 2009–2010Massachusetts Institute of Technology Materials Science and Engineering ORCID
Selected Publications
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Solubility of tholins in hexane, acetonitrile, and acrylonitrile: implications for Titan's lakes - DATA (2026)
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Solubility of tholins in hexane, acetonitrile, and acrylonitrile: implications for Titan's lakes - DATA (2026)
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Zero-Choice Events: A Minimal Framework for Determinate Resolution Without Agency (2026)
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Zero-Choice Events: A Minimal Framework for Determinate Resolution Without Agency (2026)
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Exploring Organic-mineral Evolution in Planetary Analogs: Insights from Hydrothermal Alteration of Aromatic Molecules and Mafic Minerals (2025)
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Framework for Mapping Sublimation Features on Mars’ South Polar Cap Using Object-Based Image Analysis (2025)
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Perchlorate brine formation from frost at the Viking 2 landing site (2025)
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Temperature, Albedo, and Emissivity of Triton and Proteus from Voyager 2 IRIS Data (2025)
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Evaluating the reactivity of pyrite on Mars under current and ancient geochemical environments (2025)
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Detection of ferrihydrite in Martian red dust records ancient cold and wet conditions on Mars (2025)
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Transient Alkaline Lakes on Mars: The Key to Rapid Oxidation? (2025)
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The elusive nature of Martian liquid brines (2024)
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Sulfites and sulfates formed by weathering of early martian carbonates in a sulfur dioxide-bearing atmosphere (2024)
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Water Uptake and Release of Nitrate Salt Mixtures of Relevance to the Atacama Desert and Mars (2024)
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Thermodynamic Modeling of Alterations During Climate Transition Reveals Evidence of Past Temperate Conditions on Venus (2024)
Collaboration Network
Top Collaborators
- Transient liquid water and water activity at Gale crater on Mars
- Formation of recurring slope lineae by liquid brines on present‐day Mars
- Constraining the Potential Liquid Water Environment at Gale Crater, Mars
- Experimental constraints on the composition and dynamics of Titan's polar lakes
- Global Temporal and Geographic Stability of Brines on Present-day Mars
Showing 5 of 15 shared publications
- A New Analysis of Mars “Special Regions”: Findings of the Second MEPAG Special Regions Science Analysis Group (SR-SAG2)
- Formation of liquid water at low temperatures via the deliquescence of calcium chloride: Implications for Antarctica and Mars
- Freezing of perchlorate and chloride brines under Mars-relevant conditions
- Constraining the Potential Liquid Water Environment at Gale Crater, Mars
- Water uptake by chlorate salts under Mars-relevant conditions
Showing 5 of 8 shared publications
- Sublimation rate of ice under simulated Mars conditions and the effect of layers of mock regolith JSC Mars‐1
- Sublimation kinetics of CO2 ice on Mars
- Experimental simulations of CH<sub>4</sub> evaporation on Titan
- Dynamic Temperature Fields under Mars Landing Sites and Implications for Supporting Microbial Life
- A facility for simulating Titan’s environment
Showing 5 of 6 shared publications
- Chlorate salts and solutions on Mars
- Reflectance spectra of hydrated chlorine salts: The effect of temperature with implications for Europa
- Sublimation rate of ice under simulated Mars conditions and the effect of layers of mock regolith JSC Mars‐1
- Near‐ and mid‐infrared reflectance spectra of hydrated oxychlorine salts with implications for Mars
- Effect of evaporation and freezing on the salt paragenesis and habitability of brines at the Phoenix landing site
Showing 5 of 6 shared publications
- Formation of liquid water at low temperatures via the deliquescence of calcium chloride: Implications for Antarctica and Mars
- Freezing of perchlorate and chloride brines under Mars-relevant conditions
- Constraining the Potential Liquid Water Environment at Gale Crater, Mars
- Water uptake by chlorate salts under Mars-relevant conditions
- Resolving the water cycle on a salty Mars: Planetary science and astrobiology exploration strategies for the next decade
Showing 5 of 6 shared publications
- Experimental constraints on the composition and dynamics of Titan's polar lakes
- A geological characterization of Ligeia Mare in the northern polar region of Titan
- Experimental simulations of CH<sub>4</sub> evaporation on Titan
- A facility for simulating Titan’s environment
- Near-infrared spectra of liquid/solid acetylene under Titan relevant conditions and implications for Cassini/VIMS detections
- Mineralogy and evolution of the surface of Mars: A review
- Evaluating the role of sulfide-weathering in the formation of sulfates or carbonates on Mars
- Iron weathering products in a CO2+(H2O or H2O2) atmosphere: Implications for weathering processes on the surface of Mars
- Magnetic study of an Antarctic weathering profile on basalt: Implications for recent weathering on Mars
- Spectral characterization of weathering products of elemental iron in a Martian atmosphere: Implications for Mars hyperspectral studies
- Low temperature aqueous ferric sulfate solutions on the surface of Mars
- Experimental investigation of the stability and evaporation of sulfate and chloride brines on Mars
- Mineralogical characterization of acid weathered phyllosilicates with implications for secondary martian deposits
- Global Temporal and Geographic Stability of Brines on Present-day Mars
- Near‐ and mid‐infrared reflectance spectra of hydrated oxychlorine salts with implications for Mars
- ACETYLENE ON TITAN’S SURFACE
- Experimental simulations of CH<sub>4</sub> evaporation on Titan
- A facility for simulating Titan’s environment
- Near-infrared spectra of liquid/solid acetylene under Titan relevant conditions and implications for Cassini/VIMS detections
- Evaluating the role of sulfide-weathering in the formation of sulfates or carbonates on Mars
- Iron weathering products in a CO2+(H2O or H2O2) atmosphere: Implications for weathering processes on the surface of Mars
- Magnetic study of an Antarctic weathering profile on basalt: Implications for recent weathering on Mars
- Spectral characterization of weathering products of elemental iron in a Martian atmosphere: Implications for Mars hyperspectral studies
- Sublimation rate of ice under simulated Mars conditions and the effect of layers of mock regolith JSC Mars‐1
- Stability of ice on Mars and the water vapor diurnal cycle: Experimental study of the sublimation of ice through a fine-grained basaltic regolith
- Experimental study of the effect of wind on the stability of water ice on Mars
- Sublimation kinetics of CO2 ice on Mars
- A New Analysis of Mars “Special Regions”: Findings of the Second MEPAG Special Regions Science Analysis Group (SR-SAG2)
- Deep Trek: Science of Subsurface Habitability & Life on Mars
- Report of the Joint Workshop on Induced Special Regions
- Deep Trek: Mission Concepts for Exploring Subsurface Habitability & Life on Mars — A Window into Subsurface Life in the Solar System
- Evaluating the role of sulfide-weathering in the formation of sulfates or carbonates on Mars
- Voluminous Silica Precipitated from Martian Waters during Late-stage Aqueous Alteration
- Mineralogical record of the redox conditions on early Mars
- Detection of ferrihydrite in Martian red dust records ancient cold and wet conditions on Mars
- Sublimation rate of ice under simulated Mars conditions and the effect of layers of mock regolith JSC Mars‐1
- Stability of ice on Mars and the water vapor diurnal cycle: Experimental study of the sublimation of ice through a fine-grained basaltic regolith
- Experimental study of the sublimation of ice through an unconsolidated clay layer: Implications for the stability of ice on Mars and the possible diurnal variations in atmospheric water
- Experimental study of the effect of wind on the stability of water ice on Mars
- Investigation into the radar anomaly on Venus: The effect of Venus conditions on bismuth, tellurium, and sulfur mixtures
- The Physical Origin of the Venus Low Atmosphere Chemical Gradient
- Stability of pyrrhotite under experimentally simulated Venus conditions
- Thermochemical Equilibrium Modeling Indicates That Hg Minerals Are Unlikely to Be the Source of the Emissivity Signal on the Highlands of Venus
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