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Insights into secondary organic aerosol formed via aqueous-phase reactions of phenolic compounds based on high resolution mass spectrometry

https://doi.org/10.5194/acp-10-4809-2010
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1 of 51 checkable references need attention · checked 2026-07-22

At the dated check, the references listed below either did not resolve in Crossref or DataCite, or carried a retraction notice. Each one is shown with the registry record that put it there.

7 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

References needing attention

does not resolve to a known work10.1080/02786820152051454
The 50 checked references that resolve
resolves10.1021/ac071150w
Elemental Analysis of Organic Species with Electron Ionization High-Resolution Mass Spectrometry
resolves10.1021/es703009q
O/C and OM/OC Ratios of Primary, Secondary, and Ambient Organic Aerosols with High-Resolution Time-of-Flight Aerosol Mass Spectrometry
resolves10.5194/acp-9-6633-2009
Mexico City aerosol analysis during MILAGRO using high resolution aerosol mass spectrometry at the urban supersite (T0) – Part 1: Fine particle composition and organic source apportionment
resolves10.1021/jp068736r
Hydroxyl Radical as a Probe of the Charge Distribution in Aromatics:  Phenol
resolves10.1021/es062289b
Identification of the Mass Spectral Signature of Organic Aerosols from Wood Burning Emissions
resolves10.1016/j.jaerosci.2004.02.007
A generalised method for the extraction of chemically resolved mass spectra from Aerodyne aerosol mass spectrometer data
resolves10.1021/es052170n
Evidence for Oligomer Formation in Clouds:  Reactions of Isoprene Oxidation Products
resolves10.1016/j.atmosenv.2007.11.015
Oligomers formed through in-cloud methylglyoxal reactions: Chemical composition, properties, and mechanisms investigated by ultra-high resolution FT-ICR mass spectrometry
resolves10.1021/es960359g
Aromatic Carbonyl Compounds as Aqueous-Phase Photochemical Sources of Hydrogen Peroxide in Acidic Sulfate Aerosols, Fogs, and Clouds. 1. Non-Phenolic Methoxybenzaldehydes and Methoxyacetophenones with Reductants (Phenols)
resolves10.1021/es00031a018
Reactions of hydroxyl and nitrogen trioxide radicals with phenol, cresols, and 2-nitrophenol at 296 .+-. 2 K
resolves10.1039/b201652d
A mechanistic study of the oxidation of phenol by OH/NO2/NO3 in aqueous solution
resolves10.1016/S1352-2310(99)00392-1
Secondary organic aerosol formation in cloud and fog droplets: a literature evaluation of plausibility
resolves10.1021/jp0665325
Reaction of the Hydroxyl Radical with Phenol in Water Up to Supercritical Conditions
resolves10.1039/a701468f
Oxidation of glyoxal initiated by OH in oxygenated aqueous solution
resolves10.1002/mas.20115
Chemical and microphysical characterization of ambient aerosols with the aerodyne aerosol mass spectrometer
resolves10.1029/2005GL025374
Link between isoprene and secondary organic aerosol (SOA): Pyruvic acid oxidation yields low volatility organic acids in clouds
resolves10.1016/j.atmosenv.2007.05.035
Atmospheric oxalic acid and SOA production from glyoxal: Results of aqueous photooxidation experiments
resolves10.1016/j.atmosenv.2009.10.042
Characterization of colored products formed during irradiation of aqueous solutions containing H2O2 and phenolic compounds
resolves10.1021/es9006004
Organic Aerosols in the Earth’s Atmosphere
resolves10.1021/ac061249n
Field-Deployable, High-Resolution, Time-of-Flight Aerosol Mass Spectrometer
resolves10.1016/j.ijms.2007.01.010
Detection of particle-phase polycyclic aromatic hydrocarbons in Mexico City using an aerosol mass spectrometer
resolves10.1029/2002JD002202
CAPRAM 2.4 (MODAC mechanism): An extended and condensed tropospheric aqueous phase mechanism and its application
resolves10.1029/2003JD004387
A modeling study of aqueous production of dicarboxylic acids: 1. Chemical pathways and speciated organic mass production
resolves10.1016/j.atmosenv.2004.06.025
Henry's law constant measurements for phenol, o-, m-, and p-cresol as a function of temperature
resolves10.5194/acp-6-729-2006
Atmospheric HULIS: How humic-like are they? A comprehensive and critical review
resolves10.1016/j.chemosphere.2007.01.011
Henry’s law constants of phenol and mononitrophenols in water and aqueous sulfuric acid
resolves10.1021/jp056097z
Photoinduced Oligomerization of Aqueous Pyruvic Acid
resolves10.5194/acp-9-5155-2009
The formation, properties and impact of secondary organic aerosol: current and emerging issues
resolves10.1021/es00035a026
PM-10 high-volume collection and quantitation of semi- and nonvolatile phenols, methoxylated phenols, alkanes, and polycyclic aromatic hydrocarbons from winter urban air and their relationship to wood smoke emissions
resolves10.1126/science.1180353
Evolution of Organic Aerosols in the Atmosphere
resolves10.5194/acp-5-1053-2005
Organic aerosol and global climate modelling: a review
resolves10.1016/S0079-6700(03)00014-5
Oxidative polymerization of phenols revisited
resolves10.1016/j.atmosenv.2008.01.003
Chemistry of secondary organic aerosol: Formation and evolution of low-volatility organics in the atmosphere
resolves10.1039/tf9676301181
Pulse radiolysis studies of aqueous phenol. Water elimination from dihydroxycyclohexadienyl radicals to form phenoxyl
resolves10.1021/es00141a005
Trace organic compounds in rain. 4. Identities, concentrations, and scavenging mechanisms for phenols in urban air and rain
resolves10.1021/es048039h
Isoprene Forms Secondary Organic Aerosol through Cloud Processing:  Model Simulations
resolves10.1016/S1352-2310(96)00229-4
Occurrence and formation of nitrated phenols in and out of cloud
resolves10.1016/S1352-2310(02)00202-9
FT–IR study of the ring-retaining products from the reaction of OH radicals with phenol, o-, m-, and p-cresol
resolves10.1016/j.atmosenv.2008.11.037
Secondary organic aerosol production from aqueous photooxidation of glycolaldehyde: Laboratory experiments
resolves10.1016/0045-6535(92)90017-L
Comparison of headspace and gas-stripping methods for determining the Henry's law constant (H) for organic compounds of low to intermediate H
resolves10.1002/etc.5620120504
Studies on the occurrence and distribution of wood smoke marker compounds in foggy atmospheres
resolves10.1007/BF00053823
Water-soluble organics in atmospheric particles: A critical review of the literature and application of thermodynamics to identify candidate compounds
resolves10.1021/es00048a034
Lignin pyrolysis products, lignans, and resin acids as specific tracers of plant classes in emissions from biomass combustion
resolves10.1007/BF02987621
A review of biomarker compounds as source indicators and tracers for air pollution
resolves10.5194/acp-9-3095-2009
Size-resolved aerosol chemistry on Whistler Mountain, Canada with a high-resolution aerosol mass spectrometer during INTEX-B
resolves10.1021/es901742f
Effects of Precursor Concentration and Acidic Sulfate in Aqueous Glyoxal−OH Radical Oxidation and Implications for Secondary Organic Aerosol
resolves10.5194/acp-9-5093-2009
In-cloud processes of methacrolein under simulated conditions – Part 1: Aqueous phase photooxidation
resolves10.1021/es048568l
Deconvolution and Quantification of Hydrocarbon-like and Oxygenated Organic Aerosols Based on Aerosol Mass Spectrometry
resolves10.5194/acp-5-3289-2005
Hydrocarbon-like and oxygenated organic aerosols in Pittsburgh: insights into sources and processes of organic aerosols
resolves10.1029/2007GL029979
Ubiquity and dominance of oxygenated species in organic aerosols in anthropogenically‐influenced Northern Hemisphere midlatitudes
The 7 references without a DOI — listed, not checked
no DOI — not checkedAlfarra, M. R.: Insights into Atmospheric Organic Aerosols Using an Aerosol Mass Spectrometer, Chemical Engineering, University of Manchester, Manchester, 2004.
no DOI — not checkedAnastasio, C. and Sun, J.: Secondary organic aerosol (SOA) formation via aqueous-phase reactions of phenolic compounds, in preparation, 2010.
no DOI — not checkedGelencsér, A., Hoffer, A., Kiss, G., et al.: In-situ Formation of Light-Absorbing Organic Matter in Cloud Water, J. Atmos. Chem., 45, 25–33, 2003.
no DOI — not checkedKroll, J. H., Kessler, S. H., Smith, J. D., et al.: Changes to carbon oxidation state during the photochemical aging of organic aerosol, American Geophysical Union, Fall Meeting 2009, abstract {#}A21H-07, San Francisco, 2009.
no DOI — not checkedMcLafferty, F. W. and Turecek, F.: Interpretation of Mass Spectra, University Science Books, Mill Valley, California, 1993.
no DOI — not checkedNDRL (Notre Dame Radiation Laboratory), Chemical Kinetics Rate Constants: http://www.rcdc.nd.edu/Solnkin2/, access: April 2010, 2002.
no DOI — not checkedSun, Y. and Zhang, Q.: Characterization of water-soluble organic nitrogen in fog/cloud waters using a High Resolution Time-of-Flight Aerosol Mass Spectrometer, in preparation, 2010.
What this badge says. CiteStamped means the CHECKABLE references of this work were clean at the dated check: each resolved to a known work in a public registry, and none carried a retraction notice at that time. It says nothing about the quality, findings, or importance of the work itself, and nothing about references deposited without a DOI.

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