Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 66 checked references that resolve
resolves10.1016/j.envpol.2015.11.008Occurrence, distribution and seasonal variation of organophosphate flame retardants and plasticizers in urban surface water in Beijing, China
resolves10.1016/j.envint.2010.11.010Analytical developments and preliminary assessment of human exposure to organophosphate flame retardants from indoor dust
resolves10.1016/j.watres.2013.08.024EU-wide monitoring survey on emerging polar organic contaminants in wastewater treatment plant effluents
resolves10.1016/j.chemosphere.2015.03.043Occurrence of organophosphorus flame retardants in indoor dust in multiple microenvironments of southern China and implications for human exposure
resolves10.1021/es103870fApplication of Twisselmann Extraction, SPME, and GC-MS To Assess Input Sources for Organophosphate Esters into Soil
resolves10.1021/acs.est.5b05073Hair and Nails as Noninvasive Biomarkers of Human Exposure to Brominated and Organophosphate Flame Retardants
resolves10.1016/j.envpol.2014.06.024Organophosphate flame retardants and organosiloxanes in predatory freshwater fish from locations across Canada
resolves10.1016/j.envpol.2013.04.001Occurrence and risk assessment of organophosphorus and brominated flame retardants in the River Aire (UK)
resolves10.1016/j.envpol.2011.07.020Levels and distribution of organophosphorus flame retardants and plasticizers in fishes from Manila Bay, the Philippines
resolves10.1080/109374099281142Evaluation of the hazards of industrial exposure to tricresyl phosphate:a review and interpretation of the literature
resolves10.1289/ehp.0901332House Dust Concentrations of Organophosphate Flame Retardants in Relation to Hormone Levels and Semen Quality Parameters
resolves10.1021/acs.est.5b00558Bioconcentration and Transfer of the Organophorous Flame Retardant 1,3-Dichloro-2-propyl Phosphate Causes Thyroid Endocrine Disruption and Developmental Neurotoxicity in Zebrafish Larvae
resolves10.1016/j.aquatox.2015.01.016Thyroid disruption by triphenyl phosphate, an organophosphate flame retardant, in zebrafish (Danio rerio) embryos/larvae, and in GH3 and FRTL-5 cell lines
resolves10.1021/es052206bSources and Sinks of Hydroxyl Radicals upon Irradiation of Natural Water Samples
resolves10.1002/qsar.200910027Estimation of Aqueous‐Phase Reaction Rate Constants of Hydroxyl Radical with Phenols, Alkanes and Alcohols
resolves10.1021/acs.est.6b02187Organophosphate Flame Retardants and Plasticizers in Aqueous Solution: pH-Dependent Hydrolysis, Kinetics, and Pathways
resolves10.1021/es8031659Advanced Oxidation Kinetics of Aqueous Trialkyl Phosphate Flame Retardants and Plasticizers
resolves10.1016/j.watres.2012.11.033QSAR models for oxidation of organic micropollutants in water based on ozone and hydroxyl radical rate constants and their chemical classification
resolves10.1016/j.chemosphere.2013.10.020Development of a model for predicting hydroxyl radical reaction rate constants of organic chemicals at different temperatures
resolves10.1039/C6EM00707DDevelopment of a QSAR model for predicting aqueous reaction rate constants of organic chemicals with hydroxyl radicals
resolves10.1021/acs.est.7b00347Effects of Atmospheric Water on ·OH-initiated Oxidation of Organophosphate Flame Retardants: A DFT Investigation on TCPP
resolves10.1021/es504339rPredicting Gaseous Reaction Rates of Short Chain Chlorinated Paraffins with ·OH: Overcoming the Difficulty in Experimental Determination
resolves10.1063/1.555805Critical Review of rate constants for reactions of hydrated electrons, hydrogen atoms and hydroxyl radicals (⋅OH/⋅O− in Aqueous Solution
resolves10.1016/j.chemosphere.2012.06.033Different photolysis kinetics and photooxidation reactivities of neutral and anionic hydroxylated polybrominated diphenyl ethers
resolves10.1021/es00029a021Rate constants for reaction of hydroxyl radicals with several drinking water contaminants
resolves10.1039/b303312kTransformation of 4-tert-octylphenol by UV irradiation and by an H2O2/UV process in aqueous solution
resolves10.1021/ac0517186Determination of Phosphoric Acid Mono- and Diesters in Municipal Wastewater by Solid-Phase Extraction and Ion-Pair Liquid Chromatography−Tandem Mass Spectrometry
resolves10.1021/ja00051a040UFF, a full periodic table force field for molecular mechanics and molecular dynamics simulations
resolves10.1063/1.477267Development and assessment of new exchange-correlation functionals
resolves10.1103/PhysRevB.37.785Development of the Colle-Salvetti correlation-energy formula into a functional of the electron density
resolves10.1063/1.464913Density-functional thermochemistry. III. The role of exact exchange
resolves10.1007/s00214-007-0310-xThe M06 suite of density functionals for main group thermochemistry, thermochemical kinetics, noncovalent interactions, excited states, and transition elements: two new functionals and systematic testing of four M06-class functionals and 12 other functionals
resolves10.1021/jp810292nUniversal Solvation Model Based on Solute Electron Density and on a Continuum Model of the Solvent Defined by the Bulk Dielectric Constant and Atomic Surface Tensions
resolves10.1021/es1018288Degradation of Ozone-Refractory Organic Phosphates in Wastewater by Ozone and Ozone/Hydrogen Peroxide (Peroxone): The Role of Ozone Consumption by Dissolved Organic Matter
resolves10.1021/jp802169vA Pulse Radiolysis Investigation of the Reactions of Tributyl Phosphate with the Radical Products of Aqueous Nitric Acid Irradiation
resolves10.1007/s00706-010-0405-2A quantitative structure–activity relationship study of the skin-irritant effect of thietanes
resolves10.1021/es405110tAtmospheric Chemical Reactions of Monoethanolamine Initiated by OH Radical: Mechanistic and Kinetic Study
resolves10.1039/b712608eThe mechanism of the Baeyer–Villiger rearrangement: quantum chemistry and TST study supported by experimental kinetic data
resolves10.1016/j.scitotenv.2016.07.105Atmospheric chemical reactions of alternatives of polybrominated diphenyl ethers initiated by OH: A case study on triphenyl phosphate
resolves10.1021/es900956cDevelopment of a Group Contribution Method To Predict Aqueous Phase Hydroxyl Radical (HO•) Reaction Rate Constants
resolves10.1021/es9802908Nitrate-Induced Photolysis in Natural Waters: Controls on Concentrations of Hydroxyl Radical Photo-Intermediates by Natural Scavenging Agents
resolves10.1021/es202541rLack of Influence of Extracellular Polymeric Substances (EPS) Level on Hydroxyl Radical Mediated Disinfection of <i>Escherichia coli</i>
The 6 references without a DOI — listed, not checked
no DOI — not checkedGuidance document on the validation of (Quantitative) structure–activity relationships [(Q)SAR] models
no DOI — not checkedAdvanced
Chemistry Development (ACD/Labs) Software V11.02 (©1994–2016
ACD/Labs).
no DOI — not checkedFrisch, M. J.; Trucks, G. W.; Schlegel, H. B.; Scuseria, G. E.; Robb, M. A.; Cheeseman, J. R.; Scalmani, G.; Barone, V.; Mennucci, B.; Petersson, G. A.; Nakatsuji, H.; Caricato, M.; Li, X.; Hratchian, H. P.; Izmaylov, A. F.; Bloino, J.; Zheng, G.; Sonnenberg, J. L.; Hada, M.; Ehara, M.; Toyota, K.; Fukuda, R.; Hasegawa, J.; Ishida, M.; Nakajima, T.; Honda, Y.; Kitao, O.; Nakai, H.; Vreven, T.; Montgomery, J. A., Jr.; Peralta, J. E.; Ogliaro, F.; Bearpark, M.; Heyd, J. J.; Brothers, E.; Kudin, K. N.; Staroverov, V. N.; Kobayashi, R.; Normand, J.; Raghavachari, K.; Rendell, A.; Burant, J. C.; Iyengar, S. S.; Tomasi, J.; Cossi, M.; Rega, N.; Millam, J. M.; Klene, M.; Knox, J. E.; Cross, J. B.; Bakken, V.; Adamo, C.; Jaramillo, J.; Gomperts, R.; Stratmann, R. E.; Yazyev, O.; Austin, A. J.; Cammi, R.; Pomelli, C.; Ochterski, J. W.; Martin, R. L.; Morokuma, K.; Zakrzewski, V. G.; Voth, G. A.; Salvador, P.; Dannenberg, J. J.; Dapprich, S.; Daniels, A. D.; Farkas, O.; Foresman, J. B.; Ortiz, J. V.; Cioslowski, J.; Fox, D. J. Gaussian 09, Revision A.01; Gaussian, Inc. Wallingford, CT, 2009.
no DOI — not checkedDRAGON
ver. 6 is software of TALETE srl, Italy. http://www.talete.mi.it/products/dragon_molecular_descriptors.htm (accessed Feb 12, 2018).
no DOI — not checkedMachairas, A. The UV/H2O2 advanced oxidation process in UV disinfection units: removal of selected phosphate esters by hydroxyl radical; Massachusetts Institute of Technology: Boston, 2004.
no DOI — not checkedref61/cit61
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