Effects of aerosol size and coating thickness on the molecular detection using extractive electrospray ionization
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Published:2021-09-02
Issue:9
Volume:14
Page:5913-5923
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ISSN:1867-8548
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Container-title:Atmospheric Measurement Techniques
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language:en
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Short-container-title:Atmos. Meas. Tech.
Author:
Lee Chuan PingORCID, Surdu Mihnea, Bell David M., Lamkaddam Houssni, Wang MingyiORCID, Ataei FarnoushORCID, Hofbauer Victoria, Lopez Brandon, Donahue Neil M.ORCID, Dommen JosefORCID, Prevot Andre S. H., Slowik Jay G., Wang DongyuORCID, Baltensperger Urs, El Haddad Imad
Abstract
Abstract. Extractive electrospray ionization (EESI) has been a well-known
technique for high-throughput online molecular characterization of chemical
reaction products and intermediates, detection of native biomolecules, in
vivo metabolomics, and environmental monitoring with negligible thermal and
ionization-induced fragmentation for over two decades. However, the EESI
extraction mechanism remains uncertain. Prior studies disagree on whether
particles between 20 and 400 nm diameter are fully extracted or if the
extraction is limited to the surface layer. Here, we examined the analyte
extraction mechanism by assessing the influence of particle size and coating
thickness on the detection of the molecules therein. We find that particles
are extracted fully: organics-coated NH4NO3 particles with a
fixed core volume (156 and 226 nm in diameter without coating) showed
constant EESI signals for NH4NO3 independent of the shell coating
thickness, while the signals of the secondary organic molecules comprising
the shell varied proportionally to the shell volume. We also found that the
EESI sensitivity exhibited a strong size dependence, with an increase in
sensitivity by 1–3 orders of magnitude as particle size decreased
from 300 to 30 nm. This dependence varied with the electrospray (ES)
droplet size, the particle size and the residence time for coagulation in the
EESI inlet, suggesting that the EESI sensitivity was influenced by the
coagulation coefficient between particles and ES droplets. Overall, our
results indicate that, in the EESI, particles are fully extracted by the ES
droplets regardless of the chemical composition, when they are collected by
the ES droplets. However, their coalescence is not complete and depends
strongly on their size. This size dependence is especially relevant when
EESI is used to probe size-varying particles as is the case in aerosol
formation and growth studies with size ranges below 100 nm.
Funder
Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung Horizon 2020 National Science Foundation
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference44 articles.
1. Berndt, T., Böge, O., Stratmann, F., Heintzenberg, J., and Kulmala, M.:
Rapid formation of sulfuric acid particles at near-atmospheric conditions,
Science, 307, 698–700, https://doi.org/10.1126/science.1104054, 2005. 2. Burnett, R., Chen, H., Szyszkowicz, M., Fann, N., Hubbell, B., Pope, C. A.,
Apte, J. S., Brauer, M., Cohen, A., Weichenthal, S., Coggins, J., Di, Q.,
Brunekreef, B., Frostad, J., Lim, S. S., Kan, H., Walker, K. D., Thurston,
G. D., Hayes, R. B., Lim, C. C., Turner, M. C., Jerrett, M., Krewski, D.,
Gapstur, S. M., Diver, W. R., Ostro, B., Goldberg, D., Crouse, D. L.,
Martin, R. V., Peters, P., Pinault, L., Tjepkema, M., Van Donkelaar, A.,
Villeneuve, P. J., Miller, A. B., Yin, P., Zhou, M., Wang, L., Janssen, N.
A. H., Marra, M., Atkinson, R. W., Tsang, H., Thach, T. Q., Cannon, J. B.,
Allen, R. T., Hart, J. E., Laden, F., Cesaroni, G., Forastiere, F.,
Weinmayr, G., Jaensch, A., Nagel, G., Concin, H., and Spadaro, J. V.: Global
estimates of mortality associated with longterm exposure to outdoor fine
particulate matter, P. Natl. Acad. Sci. USA, 115, 9592–9597,
https://doi.org/10.1073/pnas.1803222115, 2018. 3. Chen, H., Venter, A., and Cooks, R. G.: Extractive electrospray ionization
for direct analysis of undiluted urine, milk and other complex mixtures
without sample preparation, Chem. Commun., 2042–2044, https://doi.org/10.1039/b602614a, 2006. 4. Cheng, C. Y., Yuan, C. H., Cheng, S. C., Huang, M. Z., Chang, H. C., Cheng,
T. L., Yeh, C. S., and Shiea, J.: Electrospray-assisted laser
desorption/ionization mass spectrometry for continuously monitoring the
states of ongoing chemical reactions in organic or aqueous solution under
ambient conditions, Anal. Chem., 80, 7699–7705, https://doi.org/10.1021/ac800952e,
2008. 5. Clarke, A. G., Willison, M. J., and Zeki, E. M.: Aerosol Neutralization by Atmospheric Ammonia, in: Commission of the European Communities, edited by: Versino, B., Physico-Chemical Behaviour of Atmospheric Pollutants, Springer, Dordrecht, 331–338, 1984.
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