Articles | Volume 12, issue 8
https://doi.org/10.5194/amt-12-4339-2019
https://doi.org/10.5194/amt-12-4339-2019
Research article
 | 
09 Aug 2019
Research article |  | 09 Aug 2019

Morphology and Raman spectra of aerodynamically classified soot samples

Alberto Baldelli and Steven Nicholas Rogak

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Subject: Aerosols | Technique: Laboratory Measurement | Topic: Instruments and Platforms
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Cited articles

Alfè, M., Apicella, B., Barbella, R., Rouzaud, J. N., Tregrossi, A., and Ciajolo, A.: Structure–property relationship in nanostructures of young and mature soot in premixed flames, P. Combust. Inst., 32, 697–704, 2009. 
Baldelli, A.: AMT_12,1-8, https://figshare.com/articles/AMT_12_1, 2019. 
Baldelli, A., Trivanovic, U., and Rogak, S. N.: Electron tomography of soot for validation of 2D image processing and observation of new structural features, Aerosol Sci. Technol., 53, 575–582, 2019. 
Calabrese, G., Pettersen, S. V., Pfüller, C., Ramsteiner, M., Grepstad, J., Brandt, O., Geelhaar, L., and Fernández-Garrido, S.: Effect of surface roughness, chemical composition, and native oxide crystallinity on the orientation of self-assembled GaN nanowires on Ti foils, Nanotechnology, 28, 425602, https://doi.org/10.1088/1361-6528/aa84a1, 2017. 
Dastanpour, R.: Characterization of primary particle size variation and its influence on measurable properties of aerosol soot, University of British Columbia, PhD thesis, Vancouver, 2016. 
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Short summary
Raman spectra and soot primary particle size change with the impactor sampling stage even though the soot source is a steady laboratory flame. This is of potential interest to atmospheric researchers because past work on aerodynamically separated samples was interpreted in terms of distinct particle sources producing particles of different sizes and chemical structures.