Sara A. Thomas

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2017-2020 Department of Geosciences Princeton University, Princeton, NJ 
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"Sara Thomas"
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Publications

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Thomas SA, Mishra B, Myneni SCB. (2020) Cellular mercury coordination environment, and not cell surface ligands, influence bacterial methylmercury production. Environmental Science & Technology
Thomas SA, Catty P, Hazemann JL, et al. (2019) The role of cysteine and sulfide in the interplay between microbial Hg(ii) uptake and sulfur metabolism. Metallomics : Integrated Biometal Science
Thomas SA, Mishra B, Myneni SCB. (2019) High Energy Resolution (HR)-XANES Spectroscopy Reveals Zn Ligation in Whole Cell Bacteria. The Journal of Physical Chemistry Letters
Thomas SA, Rodby K, Roth E, et al. (2018) Spectroscopic and microscopic evidence of bio-mediated HgS species formation from Hg(II)-cysteine complexes: implications for Hg(II) bioavailability. Environmental Science & Technology
Proux O, Lahera E, Del Net W, et al. (2017) High-Energy Resolution Fluorescence Detected X-Ray Absorption Spectroscopy: A Powerful New Structural Tool in Environmental Biogeochemistry Sciences. Journal of Environmental Quality. 46: 1146-1157
Thomas SA, Gaillard JF. (2017) Cysteine addition promotes sulfide production and four-fold Hg(II)-S coordination in actively metabolizing Escherichia coli. Environmental Science & Technology
Thomas SA, Ma Q, Gaillard J. (2016) Probing changes in Hg(II) coordination during its bacterial uptake Journal of Physics: Conference Series. 712: 012078
Thomas SA, Gaillard JF. (2015) The molecular structure of aqueous Hg(II)-EDTA as determined by X-ray absorption spectroscopy. The Journal of Physical Chemistry. A. 119: 2878-84
Thomas SA, Tong T, Gaillard JF. (2014) Hg(ii) bacterial biouptake: the role of anthropogenic and biogenic ligands present in solution and spectroscopic evidence of ligand exchange reactions at the cell surface. Metallomics : Integrated Biometal Science. 6: 2213-22
Tong T, Fang K, Thomas SA, et al. (2014) Chemical interactions between Nano-ZnO and Nano-TiO2 in a natural aqueous medium. Environmental Science & Technology. 48: 7924-32
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