John Dyer Fortner

Affiliations: 
2006 Rice University, Houston, TX 
 2019- Chemical and Environmental Engineering Yale University, New Haven, CT 
Area:
Environmental Engineering, Environmental Chemistry, Materials
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"John Fortner"
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Cross-listing: Materials Tree

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Pedro J.J. Alvarez grad student 2006 Rice University
 (Fullerenes in water: Aggregation characterization, reactivity and behavior.)
Joseph B. Hughes grad student 2001-2006 Rice University (Envirotree)
 (Fullerenes in water: Aggregation characterization, reactivity and behavior.)
Jaehong Kim post-doc 2007-2008 Yale (E-Tree)
Vicki L. Colvin post-doc 2008-2010 Rice University
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Publications

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Chae SH, Kim MS, Kim JH, et al. (2023) Nanobubble Reactivity: Evaluating Hydroxyl Radical Generation (or Lack Thereof) under Ambient Conditions. Acs Es&T Engineering. 3: 1504-1510
Hagstrom AL, Anastas P, Boissevain A, et al. (2021) Yale School of Public Health Symposium: An overview of the challenges and opportunities associated with per- and polyfluoroalkyl substances (PFAS). The Science of the Total Environment. 778: 146192
Zhou X, Wang Z, Epsztein R, et al. (2020) Intrapore energy barriers govern ion transport and selectivity of desalination membranes. Science Advances. 6
Kim C, Lee J, Wang W, et al. (2020) Organic Functionalized Graphene Oxide Behavior in Water. Nanomaterials (Basel, Switzerland). 10
Sharma N, Ghosh A, Fortner JD, et al. (2020) Modeling performance of rhamnolipid-coated engineered magnetite nanoparticles for U(VI) sorption and separation Environmental Science. Nano. 7: 2010-2020
Garcia-Segura S, Nienhauser AB, Fajardo AS, et al. (2020) Disparities between experimental and environmental conditions: Research steps toward making electrochemical water treatment a reality Current Opinion in Electrochemistry. 22: 9-16
An S, Wu J, Nie Y, et al. (2020) Free chlorine induced phototransformation of graphene oxide in water: Reaction kinetics and product characterization Chemical Engineering Journal. 381: 122609
Kim C, Lee SS, Li W, et al. (2020) Towards optimizing cobalt based metal oxide nanocrystals for hydrogen generation via NaBH4 hydrolysis Applied Catalysis a: General. 589: 117303
Li W, Fortner JD. (2020) (Super)paramagnetic nanoparticles as platform materials for environmental applications: From synthesis to demonstration Frontiers of Environmental Science & Engineering. 14
Pan Z, Zhu X, Satpathy A, et al. (2019) Cr(VI) Adsorption on Engineered Iron Oxide Nanoparticles: Exploring Complexation Processes and Water Chemistry. Environmental Science & Technology
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