Literature DB >> 19924687

Mass spectrometry of hyper-velocity impacts of organic micrograins.

Ralf Srama1, Wolfgang Woiwode, Frank Postberg, Steven P Armes, Syuji Fujii, Damien Dupin, Jonathan Ormond-Prout, Zoltan Sternovsky, Sascha Kempf, Georg Moragas-Klostermeyer, Anna Mocker, Eberhard Grün.   

Abstract

The study of hyper-velocity impacts of micrometeoroids is important for the calibration of dust sensors in space applications. For this purpose, submicron-sized synthetic dust grains comprising either polystyrene or poly[bis(4-vinylthiophenyl)sulfide] were coated with an ultrathin overlayer of an electrically conductive organic polymer (either polypyrrole or polyaniline) and were accelerated to speeds between 3 and 35 km s(-1) using the Heidelberg Dust Accelerator facility. Time-of-flight mass spectrometry was applied to analyse the resulting ionic impact plasma using a newly developed Large Area Mass Analyser (LAMA). Depending on the projectile type and the impact speed, both aliphatic and aromatic molecular ions and cluster species were identified in the mass spectra with masses up to 400 u. Clusters resulting from the target material (silver) and mixed clusters of target and projectile species were also observed. Impact velocities of between 10 and 35 km s(-1) are suitable for a principal identification of organic materials in micrometeoroids, whereas impact speeds below approximately 10 km s(-1) allow for an even more detailed analysis. Molecular ions and fragments reflect components of the parent molecule, providing determination of even complex organic molecules embedded in a dust grain. In contrast to previous measurements with the Cosmic Dust Analyser instrument, the employed LAMA instrument has a seven times higher mass resolution--approximately 200--which allowed for a detailed analysis of the complex mass spectra. These fundamental studies are expected to enhance our understanding of cometary, interplanetary and interstellar dust grains, which travel at similar hyper-velocities and are known to contain both aliphatic and aromatic organic compounds. Copyright 2009 John Wiley & Sons, Ltd.

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Year:  2009        PMID: 19924687     DOI: 10.1002/rcm.4318

Source DB:  PubMed          Journal:  Rapid Commun Mass Spectrom        ISSN: 0951-4198            Impact factor:   2.419


  3 in total

1.  Bi-Directional Ion Emission from Massive Gold Cluster Impacts on Nanometric Carbon Foils.

Authors:  J Daniel Debord; Serge Della-Negra; Francisco A Fernandez-Lima; Stanislav V Verkhoturov; Emile A Schweikert
Journal:  J Phys Chem C Nanomater Interfaces       Date:  2012-03-12       Impact factor: 4.126

2.  Synthesis and Characterization of Polypyrrole-Coated Anthracene Microparticles: A New Synthetic Mimic for Polyaromatic Hydrocarbon-Based Cosmic Dust.

Authors:  Derek H Chan; Arthur Millet; Callum R Fisher; Mark C Price; Mark J Burchell; Steven P Armes
Journal:  ACS Appl Mater Interfaces       Date:  2021-01-06       Impact factor: 9.229

3.  Macromolecular organic compounds from the depths of Enceladus.

Authors:  Frank Postberg; Nozair Khawaja; Bernd Abel; Gael Choblet; Christopher R Glein; Murthy S Gudipati; Bryana L Henderson; Hsiang-Wen Hsu; Sascha Kempf; Fabian Klenner; Georg Moragas-Klostermeyer; Brian Magee; Lenz Nölle; Mark Perry; René Reviol; Jürgen Schmidt; Ralf Srama; Ferdinand Stolz; Gabriel Tobie; Mario Trieloff; J Hunter Waite
Journal:  Nature       Date:  2018-06-27       Impact factor: 49.962

  3 in total

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