Douglas Latch, Ph.D.
Affiliations: | 1999-2005 | Chemistry | University of Minnesota, Twin Cities, Minneapolis, MN |
2007- | Chemistry | Seattle University |
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Publications
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Partanen SB, Erickson PR, Latch DE, et al. (2020) Dissolved organic matter singlet oxygen quantum yields: Evaluation using time-resolved singlet oxygen phosphorescence. Environmental Science & Technology |
O'Connor M, Helal SR, Latch DE, et al. (2019) Quantifying photo-production of triplet excited states and singlet oxygen from effluent organic matter. Water Research. 156: 23-33 |
Erickson PR, Moor KJ, Werner JJ, et al. (2018) Singlet Oxygen Phosphorescence as a Probe for Triplet-State Dissolved Organic Matter Reactivity. Environmental Science & Technology |
McKay G, Korak JA, Erickson PR, et al. (2018) Response to Comment on The Case Against Charge Transfer Interactions in Dissolved Organic Matter Photophysics. Environmental Science & Technology |
McKay G, Korak JA, Erickson PR, et al. (2017) The Case Against Charge Transfer Interactions in Dissolved Organic Matter Photophysics. Environmental Science & Technology |
Appiani E, Ossola R, Latch DE, et al. (2017) Aqueous singlet oxygen reaction kinetics of furfuryl alcohol: effect of temperature, pH, and salt content. Environmental Science. Processes & Impacts |
Arnold WA, Oueis Y, O'Connor M, et al. (2016) QSARs for phenols and phenolates: oxidation potential as a predictor of reaction rate constants with photochemically produced oxidants. Environmental Science. Processes & Impacts |
Chu C, Erickson PR, Lundeen RA, et al. (2016) Photochemical and non-photochemical transformations of cysteine with dissolved organic matter. Environmental Science & Technology |
Felcyn JR, Davis JC, Tran LH, et al. (2012) Aquatic photochemistry of isoflavone phytoestrogens: degradation kinetics and pathways. Environmental Science & Technology. 46: 6698-704 |
Grandbois M, Latch DE, McNeill K. (2008) Microheterogeneous concentrations of singlet oxygen in natural organic matter isolate solutions. Environmental Science & Technology. 42: 9184-90 |