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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 110, 2012 - Issue 21-22: FASE (Femto-, Astro-, Spectro-Ethyne)
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Special Issue: FASE (Femto-, Astro-, Spectro-Ethyne)

The formation and stability of co-crystalline NH3 · C2H2 aerosol particles

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Pages 2807-2815 | Received 10 May 2012, Accepted 31 May 2012, Published online: 11 Jul 2012
 

Abstract

NH3/C2H2 aerosols were formed in a bath gas cooling cell at cryogenic temperatures and studied using infrared spectroscopy. The infrared band shapes associated with these particles were quite different from those of the pure solids and vibrational shifts of up to 100 wavenumbers were observed. The phase of these particles was identified as a NH3 · C2H2 co-crystal and was found to be thermodynamically stable with respect to the solids of pure NH3 and C2H2. Experiments with core–shell structures demonstrated that the co-crystalline phase could also be formed through a solid state reaction of pure NH3 and C2H2 in aerosol particles. The results of this work are relevant to planetary atmospheres where both NH3 and C2H2 are present, as the co-crystalline phase can readily form in mixed particles of these substances and its optical properties cannot be understood by simply considering the pure substances.

Acknowledgements

We would like to thank Dr. Kerry J. Knox for help with preliminary experiments. Financial support from the Natural Sciences and Engineering Research Council of Canada (NSERC) and the Canada Foundation for Innovation is gratefully acknowledged. This research has been enabled through the generous allocation of advanced computing resources by West-Grid and Compute/Calcul Canada. We acknowledge an NSERC graduate fellowship (T.C.P.) and an NSERC E. W. R. Steacie Memorial Fellowship (R.S.).

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