Gordon E. Brown
Affiliations: | 1973- | Geological Sciences | Stanford University, Palo Alto, CA |
Area:
Surface/Interface Chemistry, Envronmental Chemistry/Geochemistry, NanomaterialsWebsite:
https://earth.stanford.edu/gordon-brownGoogle:
"Gordon Edgar Brown" OR "Gordon E Brown" Stanford""Bio:
https://goldschmidtabstracts.info/2017/1651.pdf
https://scholar.google.com/citations?user=CAAOAJEAAAAJ&hl=en
https://books.google.com/books?id=-S5TNwAACAAJ
https://www.geochemicalperspectives.org/wp-content/uploads/GPv1n4-5.pdf The Life and Times of Gordon Brown
Parents
Sign in to add mentorGerald V Gibbs | grad student | 1970 | Virginia Tech (Geotree) | |
(Crystal chemistry of the olivines) |
Children
Sign in to add traineePeggy A. O'Day | grad student | Stanford University & SLAC National Accelerator Laboratory (Chemistry Tree) | |
Michael F. Hochella | grad student | 1981 | Stanford (Microtree) |
Christopher S. Kim | grad student | 1997-2002 | Stanford |
Jeffrey G. Catalano | grad student | 1999-2004 | Stanford (Chemistry Tree) |
Greg Lowry | post-doc | 2000-2001 | Stanford |
BETA: Related publications
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Publications
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Kumar N, Noël V, Planer-Friedrich B, et al. (2020) Redox Heterogeneities Promote Thioarsenate Formation and Release into Groundwater from Low Arsenic Sediments. Environmental Science & Technology |
Noël V, Kumar N, Boye K, et al. (2020) FeS colloids – formation and mobilization pathways in natural waters Environmental Science. Nano. 7: 2102-2116 |
Fitts JP, Persson P, Brown GE, et al. (2019) Structure and Bonding of Cu(II)-Glutamate Complexes at the gamma-Al(2)O(3)-Water Interface. Journal of Colloid and Interface Science. 220: 133-147 |
Towle SN, Bargar JR, Brown GE, et al. (2019) Sorption of Co(II) on Metal Oxide Surfaces. Journal of Colloid and Interface Science. 217: 312-321 |
Bargar JR, Towle SN, Brown GE, et al. (2019) XAFS and Bond-Valence Determination of the Structures and Compositions of Surface Functional Groups and Pb(II) and Co(II) Sorption Products on Single-Crystal alpha-Al2O3 Journal of Colloid and Interface Science. 185: 473-92 |
Kumar N, Pacheco JL, Noël V, et al. (2018) Sulfidation mechanisms of Fe(III)-(oxyhydr)oxide nanoparticles: a spectroscopic study Environmental Science. Nano. 5: 1012-1026 |
Nelson J, Bargar JR, Wasylenki L, et al. (2018) Effects of nano-confinement on Zn(II) adsorption to nanoporous silica Geochimica Et Cosmochimica Acta. 240: 80-97 |
Jung JE, Liguori S, Jew AD, et al. (2017) Theoretical and experimental investigations of mercury adsorption on hematite surfaces. Journal of the Air & Waste Management Association (1995) |
Joe-Wong C, Brown GE, Maher K. (2017) Kinetics and Products of Chromium(VI) Reduction by Iron(II/III)-Bearing Clay Minerals. Environmental Science & Technology |
Brown GE, Hochella MF, Calas G. (2017) Improving Mitigation of the Long-Term Legacy of Mining Activities: Nano- and Molecular-Level Concepts and Methods Elements. 13: 325-330 |