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Mattias Hallquist, Ph.D

Affiliations: 
Chemistry and Molecular Biology University of Gothenburg, Gothenburg, Västra Götalands län, Sweden 
Website:
http://www.cmb.gu.se/english/staff/hallquist-mattias/
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"Mattias Hallquist"
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Parents

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Evert Ljungström grad student 1998 University of Gothenburg
 (The Atmospheric Chemistry of Selected Unsaturated and Oxygenated Compounds)
Richard Anthony (Tony) Cox post-doc 1998-1999 Cambridge
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Publications

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Tan W, Zhu L, Mikoviny T, et al. (2021) Atmospheric Chemistry of 2-Amino-2-methyl-1-propanol: A Theoretical and Experimental Study of the OH-Initiated Degradation under Simulated Atmospheric Conditions. The Journal of Physical Chemistry. A
Brownwood B, Turdziladze A, Hohaus T, et al. (2021) Gas-Particle Partitioning and SOA Yields of Organonitrate Products from NO-Initiated Oxidation of Isoprene under Varied Chemical Regimes. Acs Earth & Space Chemistry. 5: 785-800
Kong X, Salvador CM, Carlsson S, et al. (2020) Molecular characterization and optical properties of primary emissions from a residential wood burning boiler. The Science of the Total Environment. 754: 142143
Wang X, Jacob DJ, Fu X, et al. (2020) Effects of anthropogenic chlorine on PM and ozone air quality in China. Environmental Science & Technology
Johansson SM, Lovric J, Kong X, et al. (2020) An Experimental and Computational Study of Molecular Water Interactions with Condensed Nopinone Surfaces under Atmospherically Relevant Conditions. The Journal of Physical Chemistry. A
Carlsson P, Dewald P, Shenolikar J, et al. (2020) New insights into the gas-phase oxidation of isoprene by the nitrate radical from experiments in the atmospheric simulation chamber SAPHIR The Egu General Assembly
Garmash O, Rissanen MP, Pullinen I, et al. (2020) Multi-generation OH oxidation as a source for highly oxygenated organic molecules from aromatics Atmospheric Chemistry and Physics. 20: 515-537
Zhou L, Hallquist ÅM, Hallquist M, et al. (2020) A transition of atmospheric emissions of particles and gases from on-road heavy-duty trucks Atmospheric Chemistry and Physics. 20: 1701-1722
Wang Y, Hu M, Wang Y, et al. (2020) Comparative Study of Particulate Organosulfates in Contrasting Atmospheric Environments: Field Evidence for the Significant Influence of Anthropogenic Sulfate and NOx Environmental Science and Technology Letters
Mohr C, Thornton JA, Heitto A, et al. (2019) Molecular identification of organic vapors driving atmospheric nanoparticle growth. Nature Communications. 10: 4442
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