- Solubility of Hematite Revisited: Effects of Hydration
- Hydrologic Flow Controls on B iologic Iron (III) Reduction in Natural Sediments - Morgan L. MInyard and William D. Burgos*
- Reaction-based modeling of quinone - mediated bacterialiron (III) reduction - William D. Burgos, Yilin Fang, Richard A. Royer, Gour-Tsyhyeh, James J. Stone, Byong-Hunjeon, and Briand A. Dempsey
- Inhibition of Biological Reductive Dissolution of Hematite by Ferrous Iron - Richard A. Boyer, Brian A. Dempsey, Byong-Hunjeon, and William D. Burgos
- Enhancement of Biological Reduction of Hematite by Electron Shuttling and Fe(II) Complexation - Richard A. Royer, William D. Burgos, Angela S. Fisher, Richard F. Unz, and Brian A. Dempsey
- Enhancement of Hematite Bioreduction by Natural Organic Matter - Richard A. Royer, William D. Burgos, Angela S. Fisher, Byong-Byong-Hunjeon, Richard F. Unz, and Brian A. Dempsey
- Impact of Zinc on Biological Fe(III) and Nitrate Reduction by Shewanella putrefaciensCN32 - James J. Stone, William D. Burgos, Richard A. Royer, and Brian A. Dempsey
- Zinc and Manganese Inhibition of Biological Hematite Reduction - James J. Stone, William D. Burgos, Richard A. Royer, and Brian A. Dempsey
- Effect of Natural Organic Matter on Zinc Inhibition of Hematite Bioreduction by Shewanella putrefaciens CN32 - James J. Stone, Richard A. Royer, Brian A. Dempsey, and William D. Burgos
- Biological Reduction of Nanoengineered Iron (III) Oxide Sculptured Thin Films - Huitan, Obiefune K. Ezekoye, James Vanderschalie, Mark W. Horn, Akhlesh Lakhtakia, Jianxu, and William D. Burgos
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