publications

  • D.S. Arndt,* M. Mattei,* C.A. Heist, and M.M. McGuire, “Measurement of Swelling of Individual Smectite Tactoids in situ Using Atomic Force Microscopy,” Clays and Clay Minerals, 65(2), 2017: 92-103.
  • M.M. McGuire and E.K. Herman, “A novel ATR-FTIR technique for Identifying Colloid Composition in Natural Waters,” Hydrological Processes, 29(6), 2015: 1314–1323.
  • R.B. Merola* and M.M. McGuire, “Comparison of the Electronic Spectra and Reduction Processes in the Uley Nontronites, NAu-1 and NAu-2,” Clays and Clay Minerals, 57(6), 2009: 771-778.
  • B.R. Bzdek* and M.M. McGuire, “Polarized ATR-FTIR Investigation of Fe Reduction in the Uley Nontronites,” Clays and Clay Minerals, 57(2), 2009: 227-233.
  • J. Ryan Bailey and M.M. McGuire, “ATR-FTIR Observations of Water Structure in Colloidal Silica: Implications for the Hydration Force Mechanism,” Langmuir, 23(22), 2007: 10995-10999.
  • R.B. Merola,* E.D. Fournier,* and M.M. McGuire, “Spectroscopic Investigations of Fe2+ Complexation on Nontronite Clays,” Langmuir, 23(3), 2007: 1223-1226.
  • L. Gui, R.W. Gillham, M.M. McGuire, and D. H. Fairbrother, “The Performance of Palladized Granular Iron: Enhancement and Deactivation” In Zero-Valent Iron Reactive Materials for Hazardous Waste and Inorganics Removal, I.M.C. Lo, R.Y. Surampalli, and K.C.K. Lai, Eds., Reston, VA: Amer. Soc. Civ. Eng., 2006.
  • A.C. Grenier, M.M. McGuire, D.H. Fairbrother, and A.L. Roberts, “Treatment of Vapor-Phase Organohalides with Zero-Valent Iron and Ni/Fe Reductants,” Environ. Engineer. Sci. 21(4), 2004: 421-435.
  • M.M. McGuire, D.L. Carlson, P.J. Vikesland, T. Kohn, A. Grenier, L.A. Langley, A.L. Roberts, and D.H. Fairbrother, “Applications of Surface Analysis in the Environmental Sciences: Dehalogenation of Chlorocarbons with Zero-Valent Iron and Iron-Containing Mineral Surfaces,” Anal. Chim. Acta  496 (1-2), 2003: 301-313.
  • D.L. Carlson, M.M. McGuire, D.H. Fairbrother, and A.L. Roberts, “Influence of Surface Composition on the Kinetics of Alachlor Reduction by Iron Pyrite,” Environ. Sci. Tech. 37 (11), 2003: 2394-2399.
  • M.M. McGuire, K.J. Edwards, J.F. Banfield, and R.J. Hamers, “Kinetics, Surface Chemistry, and Structural Evolution of Microbially Mediated Sulfide Mineral Dissolution,” Geochim. Cosmochim. Acta  65 (8), 2001: 57-72.
  • M.M. McGuire, K.N. Jallad, D. Ben-Amotz, and R.J. Hamers, “Chemical Mapping of Elemental Sulfur on Pyrite and Arsenopyrite Surfaces Using Near-Infrared Raman Imaging Microscopy,” Appl. Surf. Sci. 178 (1-4), 2001: 105-115.
  • M.M. McGuire, J.F. Banfield and R.J. Hamers, “Quantitative Determination of Elemental Sulfur at the Arsenopyrite Surface After Oxidation by Ferric Iron: Mechanistic Implications,” Geochem. Transactions 4, 2001; Digital Object Identifier: 10.1039/b104111h.
  • M.M. McGuire and R.J. Hamers, “Extraction and Quantitative Analysis of Elemental Sulfur from Sulfide Mineral Surfaces by High-Performance Liquid Chromatography,” Environ. Sci. Tech. 34 (21), 2000: 4651-4655.
  • K.J. Edwards, P.L. Bond, G.K. Druschel, M.M. McGuire, R.J. Hamers, and J.F. Banfield, “Geochemical and Biological Aspects of Sulfide Mineral Dissolution: Lessons from Iron Mountain, California,” Chem. Geology 169, 2000: 383-397.
  • K.J. Edwards, B.M. Goebel, T.M. Rodgers, M.O. Schrenk, T.M. Gihring, M.M. Cardona, B. Hu, M.M. McGuire, R.J. Hamers, N.R. Pace, and J.F. Banfield, “Geomicrobiology of Pyrite (FeS2) Dissolution: A Case Study at Iron Mountain, California,” Geomicrobiology J. 16 (2), 1999: 155-179.
  • S. N. Kuester, M. M. McGuire, and S. M. Drew, “Electrochemically-Initiated Polymerization of Zinc(II)5-vinyl-10,15,20-triphenylporphyrin,”  J. Electroanal. Chem. 452, 1998: 13-18.

*undergraduate student