Tyler Maddox
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OverviewAI-generated summary
Tyler Maddox's research focuses on the design and application of metal-organic frameworks (MOFs). His recent publications explore MOFs for sensing applications, specifically for the detection of per- and polyfluoroalkyl substances (PFAS), and for the recovery of gallium. Maddox investigates how particle size influences the fluorescent properties of MOFs in sensing contexts. He also examines the underlying mechanisms of gallium adsorption to inform the rational design of MOFs for improved gallium recovery processes. His work contributes to the development of advanced materials for environmental monitoring and resource management.
Metrics
- Publications: 3
Selected Publications
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Particle-Size Modulated MOFs for Fluorescent PFAS Sensing (2026)
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From Gallium Adsorption Mechanisms to the Rational Design of Metal–Organic Frameworks for Gallium Recovery (2026)
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Top Collaborators
- From Gallium Adsorption Mechanisms to the Rational Design of Metal–Organic Frameworks for Gallium Recovery
- Particle-Size Modulated MOFs for Fluorescent PFAS Sensing
- From Gallium Adsorption Mechanisms to the Rational Design of Metal–Organic Frameworks for Gallium Recovery
- Particle-Size Modulated MOFs for Fluorescent PFAS Sensing
- From Gallium Adsorption Mechanisms to the Rational Design of Metal–Organic Frameworks for Gallium Recovery
- Particle-Size Modulated MOFs for Fluorescent PFAS Sensing
- From Gallium Adsorption Mechanisms to the Rational Design of Metal–Organic Frameworks for Gallium Recovery
- Particle-Size Modulated MOFs for Fluorescent PFAS Sensing
- Particle-Size Modulated MOFs for Fluorescent PFAS Sensing
- Particle-Size Modulated MOFs for Fluorescent PFAS Sensing
- Particle-Size Modulated MOFs for Fluorescent PFAS Sensing
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