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Frazier, Shane D.; Matar, Mohammad G.; Osio-Norgaard, Jorge; Aday, Anastasia N.; Delesky, Elizabeth A.; Srubar, Wil V. (, Cell Reports Physical Science)
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Matar, M.; Frazier, S.; Srubar III, W.V (, XV International Conference on Durability of Building Materials and Components (DBMC 2020))null (Ed.)
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PVA‐ and PEG‐assisted sol‐gel synthesis of aluminosilicate precursors for N‐A‐S‐H geopolymer cementsGevaudan, Juan Pablo; Wallat, Jaqueline D.; Lama, Bimala; Srubar, Wil V. (, Journal of the American Ceramic Society)
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Delesky, Elizabeth; Frazier, Shane; Wallat, Jaqueline; Bannister, Kendra; Heveran, Chelsea; Srubar, Wil (, Polymers)The ability of a natural ice-binding protein from Shewanella frigidimarina (SfIBP) to inhibit ice crystal growth in highly alkaline solutions with increasing pH and ionic strength was investigated in this work. The purity of isolated SfIBP was first confirmed via sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) and size-exclusion chromatography with an ultraviolet detector (SEC-UV). Protein stability was evaluated in the alkaline solutions using circular dichroism spectroscopy, SEC-UV, and SDS-PAGE. SfIBP ice recrystallization inhibition (IRI) activity, a measure of ice crystal growth inhibition, was assessed using a modified splat assay. Statistical analysis of results substantiated that, despite partial denaturation and misfolding, SfIBP limited ice crystal growth in alkaline solutions (pH ≤ 12.7) with ionic strength I ≤ 0.05 mol/L, but did not exhibit IRI activity in alkaline solutions where pH ≥ 13.2 and I ≥ 0.16 mol/L. IRI activity of SfIBP in solutions with pH ≤ 12.7 and I ≤ 0.05 mol/L demonstrated up to ≈ 66% reduction in ice crystal size compared to neat solutions.more » « less
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