Phanourios Tamamis

Affiliations: 
2010 Physics University of Cyprus, Nicosia, Nicosia, Cyprus 
 2013-2014 Chemical Engineering Princeton University, Princeton, NJ 
 2015- Chemical Engineering Texas A & M University, College Station, TX, United States 
Website:
http://people.tamu.edu/~tamamis/
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"Phanourios Tamamis"
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Publications

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Oladele JO, Wang M, Xenophontos X, et al. (2024) Chlorophyll-Amended Organoclays for the Detoxification of Ochratoxin A. Toxins. 16
Lilly K, Wang M, Orr AA, et al. (2024) β-Lactoglobulin Enhances Clay and Activated Carbon Binding and Protection Properties for Cadmium and Lead. Industrial & Engineering Chemistry Research. 63: 16124-16140
Rivenbark KJ, Lilly K, Wang M, et al. (2023) Green-engineered clay- and carbon-based composite materials for the adsorption of benzene from air. Journal of Environmental Chemical Engineering. 12
Heid LF, Agerschou ED, Orr AA, et al. (2023) Sequence-based identification of amyloidogenic β-hairpins reveals a prostatic acid phosphatase fragment promoting semen amyloid formation. Computational and Structural Biotechnology Journal. 23: 417-430
Wang M, Lilly K, Martin LMA, et al. (2023) Adsorption and removal of polystyrene nanoplastics from water by green-engineered clays. Water Research. 249: 120944
Rivenbark KJ, Wang M, Lilly K, et al. (2022) Development and characterization of chlorophyll-amended montmorillonite clays for the adsorption and detoxification of benzene. Water Research. 221: 118788
Orr AA, Kuhlmann SK, Tamamis P. (2022) Computational design of a β-wrapin's N-terminal domain with canonical and non-canonical amino acid modifications mimicking curcumin's proposed inhibitory function. Biophysical Chemistry. 286: 106805
Orr AA, Chen Y, Gazit E, et al. (2022) Computational and Experimental Protocols to Study Cyclo-dihistidine Self- and Co-assembly: Minimalistic Bio-assemblies with Enhanced Fluorescence and Drug Encapsulation Properties. Methods in Molecular Biology (Clifton, N.J.). 2405: 179-203
Hearon SE, Orr AA, Moyer H, et al. (2021) Montmorillonite clay-based sorbents decrease the bioavailability of per- and polyfluoroalkyl substances (PFAS) from soil and their translocation to plants. Environmental Research. 205: 112433
Aviv M, Cohen-Gerassi D, Orr AA, et al. (2021) Modification of a Single Atom Affects the Physical Properties of Double Fluorinated Fmoc-Phe Derivatives. International Journal of Molecular Sciences. 22
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