1 |
The electronic, chemical and electrocatalytic processes and intermediates on iron oxide surfaces during photoelectrochemical water splitting Braun A, Hu YL, Boudoire F, Bora DK, Sarma DD, Gratzel M, Eggleston CM Catalysis Today, 260, 72, 2016 |
2 |
Photooxidation of Chloride by Oxide Minerals: Implications for Perchlorate on Mars Schuttlefield JD, Sambur JB, Gelwicks M, Eggleston CM, Parkinson BA Journal of the American Chemical Society, 133(44), 17521, 2011 |
3 |
Structural and redox properties of mitochondrial cytochrome c co-sorbed with phosphate on hematite (alpha-Fe2O3) surfaces Khare N, Eggleston CM, Lovelace DM, Boese SW Journal of Colloid and Interface Science, 303(2), 404, 2006 |
4 |
Reaction of hydroquinone with hematite I. Study of adsorption by electrochemical-scanning tunneling microscopy and X-ray photoelectron spectroscopy Stack AG, Eggleston CM, Engelhard MH Journal of Colloid and Interface Science, 274(2), 433, 2004 |
5 |
Reaction of hydroquinone with hematite II. Calculated electron-transfer rates and comparison to the reductive dissolution rate Stack AG, Rosso KM, Smith DMA, Eggleston CM Journal of Colloid and Interface Science, 274(2), 442, 2004 |
6 |
Kink dynamics and step growth on barium sulfate (001): A hydrothermal scanning probe microscopy study Higgins SR, Bosbach D, Eggleston CM, Knauss KG Journal of Physical Chemistry B, 104(30), 6978, 2000 |
7 |
Dissolution kinetics of the barium sulfate (001) surface by hydrothermal atomic force microscopy Higgins SR, Jordan G, Eggleston CM, Knauss KG Langmuir, 14(18), 4967, 1998 |