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Langmuir : the ACS Journal of Surfaces and Colloids|February 13, 2014
Stimulus-responsive Au@(MeO2MAx-co-OEGMAy) nanoparticles stabilized by non-DLVO interactions: implications of ionic strength and copolymer (x:y) fraction on aggregation kineticsFilippo Gambinossi, Munish Chanana, Steven E Mylon, et al.Journal of Colloid and Interface Science|March 16, 2010
The influence of dicarboxylic acid structure on the stability of colloidal hematiteJohn J Lenhart, Rachel Heyler, Eric M Walton, et al.Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry|June 20, 2017
Improving the Quantum Yields of Perylene Diimide Aggregates by Increasing Molecular Hydrophobicity in Polar MediaXiaoyu Xu, Ashli Austin, Steven E Mylon, et al.Environmental Science & Technology|December 5, 2025
Is Singlet Oxygen an Important Oxidant in Advanced Oxidation Processes?Shikha Garg, T David WaiteEnvironmental Toxicology and Chemistry|July 24, 2012
Oxytetracycline interactions at the soil-water interface: effects of environmental surfaces on natural transformation and growth inhibition of Azotobacter vinelandiiHeather E Goetsch, Steven E Mylon, Shane Butler, et al.Environmental Science & Technology|July 22, 2006
Process optimization of fenton oxidation using kinetic modelingChristopher K Duesterberg, T David WaiteEnvironmental Science & Technology|March 2, 2002
Kinetic model for Fe(II) oxidation in seawater in the absence and presence of natural organic matterAndrew L Rose, T David WaiteWater Research|April 20, 2010
Iron speciation and iron species transformation in activated sludge membrane bioreactorsXiao-Mao Wang, T David WaiteJournal of Inorganic Biochemistry|May 13, 2014
Cu(II)-catalyzed oxidation of dopamine in aqueous solutions: mechanism and kineticsA Ninh Pham, T David WaiteEnvironmental Science & Technology|August 10, 2010
Role of heterogeneous precipitation in determining the nature of products formed on oxidation of Fe(II) in seawater containing natural organic matterMark W Bligh, T David WaitePageof 107