Methods for reactive oxygen species (ROS) detection in aqueous environments
Justina M. Burns(University of South Carolina), T. David Waite(NHS Tayside), William J. Cooper(University of Florida), Andrew L. Rose(Southern Cross University), John L. Ferry(University of South Carolina), Steven A. Rusak(University of Otago), Kristopher McNeill(ETH Zurich), Christopher J. Miller(UNSW Sydney), D. Whitney King(Colby College), Barrie M. Peake(University of Otago), William L. Miller(University of Georgia), Brian P. DiMento(Colby College)
Cited by 444
Related Papers
Photochemical Fate of Sulfa Drugs in the Aquatic Environment: Sulfa Drugs Containing Five-Membered Heterocyclic Groups
|Environmental Science & Technology|2004|738
Faradaic reactions in capacitive deionization (CDI) - problems and possibilities: A review
|Water Research|2017|734
Triplet state dissolved organic matter in aquatic photochemistry: reaction mechanisms, substrate scope, and photophysical properties
|Environmental Science Processes & Impacts|2016|656
Biodegradation of synthetic polymers in soils: Tracking carbon into CO <sub>2</sub> and microbial biomass
|Science Advances|2018|529
Photodegradation of pharmaceuticals in the aquatic environment: A review
|Aquatic Sciences|2003|472