Vashanti Storr
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Researcher
Unknown Researcher
Research Areas
Biography and Research Information
OverviewAI-generated summary
Vashanti Storr's research focuses on the application of cold plasma technology to enhance material properties and chemical synthesis. Recent work includes studies on cold-plasma-driven ammonia synthesis over porous silica, investigating the role of reactor morphology. Storr has also explored the performance and efficiency improvements induced by cold plasma on SAPO-34 membranes for CO2 and CH4 mixtures. Further investigations involve tuning product distribution in plasma-activated water by modifying reactor design and the development of plasma-enhanced graphene coatings on Ti-6Al-4V, analyzed through non-destructive characterization. Storr collaborates with Maria L. Carreon, Fnu Gorky, Fernando Maia de Oliveira, and Grace Jones at the University of Arkansas at Fayetteville.
Metrics
- h-index: 2
- Publications: 5
- Citations: 13
Selected Publications
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Tuning Product Distribution in Plasma‐Activated Water by Modifying Reactor Design (2026)
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Plasma-Enhanced Graphene Coatings on Ti-6Al-4V: Insights from Non-Destructive Characterization (2026)
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Cold-Plasma-Driven Ammonia Synthesis over Porous Silica: The Role of the Morphology (2025)
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Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures (2024)
Collaboration Network
Top Collaborators
- Cold-Plasma-Driven Ammonia Synthesis over Porous Silica: The Role of the Morphology
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Plasma-Enhanced Graphene Coatings on Ti-6Al-4V: Insights from Non-Destructive Characterization
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Tuning Product Distribution in Plasma‐Activated Water by Modifying Reactor Design
- Cold-Plasma-Driven Ammonia Synthesis over Porous Silica: The Role of the Morphology
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Plasma-Enhanced Graphene Coatings on Ti-6Al-4V: Insights from Non-Destructive Characterization
- Cold-Plasma-Driven Ammonia Synthesis over Porous Silica: The Role of the Morphology
- Tuning Product Distribution in Plasma‐Activated Water by Modifying Reactor Design
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Plasma-Enhanced Graphene Coatings on Ti-6Al-4V: Insights from Non-Destructive Characterization
- Plasma-Enhanced Graphene Coatings on Ti-6Al-4V: Insights from Non-Destructive Characterization
- Plasma-Enhanced Graphene Coatings on Ti-6Al-4V: Insights from Non-Destructive Characterization
- Tuning Product Distribution in Plasma‐Activated Water by Modifying Reactor Design
- Tuning Product Distribution in Plasma‐Activated Water by Modifying Reactor Design
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