John Dyer Fortner
Affiliations: | 2006 | Rice University, Houston, TX | |
2019- | Chemical and Environmental Engineering | Yale University, New Haven, CT |
Area:
Environmental Engineering, Environmental Chemistry, MaterialsGoogle:
"John Fortner"Mean distance: 11375.1
Cross-listing: Materials Tree
Parents
Sign in to add mentorPedro 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 |