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  Fractal morphology, imaging and mass spectrometry of single aerosol particles in flight

Loh, N.-T.-D., Hampton, C. Y., Martin, A. V., Starodub, D., Sierra, R. G., Barty, A., et al. (2012). Fractal morphology, imaging and mass spectrometry of single aerosol particles in flight. Nature, 486(7404), 513-517. doi:10.1038/nature11222.

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Genre: Zeitschriftenartikel
Alternativer Titel : Fractal morphology, imaging and mass spectrometry of single aerosol particles in flight

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 Urheber:
Loh, Ne-Te Duane, Autor
Hampton, Christina Y., Autor
Martin, Andrew V., Autor
Starodub, Dmitri, Autor
Sierra, Raymond G., Autor
Barty, Anton, Autor
Aquila, Andrew, Autor
Schulz, Joachim, Autor
Lomb, Lukas1, Autor           
Steinbrener, Jan1, Autor           
Shoeman, Robert L.1, Autor           
Kassemeyer, Stephan1, Autor           
Bostedt, Christoph, Autor
Bozek, John, Autor
Epp, Sascha W., Autor
Erk, Benjamin1, Autor           
Hartmann, Robert, Autor
Rolles, Daniel1, Autor           
Rudenko, Artem, Autor
Rudek, Benedikt1, Autor           
Foucar, Lutz1, Autor           Kimmel, Nils, AutorWeidenspointner, Georg, AutorHauser, Gunter, AutorHoll, Peter, AutorPedersoli, Emanuele, AutorLiang, Mengning, AutorHunter, Mark S., AutorGumprecht, Lars, AutorCoppola, Nicola, AutorWunderer, Cornelia B., AutorGraafsma, Heinz, AutorMaia, Filipe R. N. C., AutorEkeberg, Tomas, AutorHantke, Max, AutorFleckenstein, Holger, AutorHirsemann, Helmut, AutorNass, Karol1, Autor           White, Thomas A., AutorTobias, H. J., AutorFarquar, George R., AutorBenner, W. Henry, AutorHau−Riege, Stefan P., AutorReich, Christian, AutorHartmann, Andreas, AutorSoltau, Heike, AutorMarchesini, Stefano, AutorBajt, Saša, AutorBarthelmess, Miriam, AutorBucksbaum, Phillip, AutorHodgson, Keith O., AutorStrüder, Lothar, AutorUllrich, Joachim, AutorFrank, Matthias, AutorSchlichting, Ilme1, Autor           Chapman, Henry N., AutorBogan, Michael J., Autor mehr..
Affiliations:
1Department of Biomolecular Mechanisms, Max Planck Institute for Medical Research, Max Planck Society, ou_1497700              

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 Zusammenfassung: The morphology of micrometre−size particulate matter is of critical importance in fields ranging from toxicology to climate science, yet these properties are surprisingly difficult to measure in the particles' native environment. Electron microscopy requires collection of particles on a substrate; visible light scattering provides insufficient resolution; and X−ray synchrotron studies have been limited to ensembles of particles. Here we demonstrate an in situ method for imaging individual sub−micrometre particles to nanometre resolution in their native environment, using intense, coherent X−ray pulses from the Linac Coherent Light Source free−electron laser. We introduced individual aerosol particles into the pulsed X−ray beam, which is sufficiently intense that diffraction from individual particles can be measured for morphological analysis. At the same time, ion fragments ejected from the beam were analysed using mass spectrometry, to determine the composition of single aerosol particles. Our results show the extent of internal dilation symmetry of individual soot particles subject to non−equilibrium aggregation, and the surprisingly large variability in their fractal dimensions. More broadly, our methods can be extended to resolve both static and dynamic morphology of general ensembles of disordered particles. Such general morphology has implications in topics such as solvent accessibilities in proteins, vibrational energy transfer by the hydrodynamic interaction of amino acids, and large−scale production of nanoscale structures by flame synthesis

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Sprache(n): eng - English
 Datum: 2012-09-162012-05-092012-06-272012-06-27
 Publikationsstatus: Erschienen
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 Art der Begutachtung: Expertenbegutachtung
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Titel: Nature
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: London : Nature Publishing Group
Seiten: - Band / Heft: 486 (7404) Artikelnummer: - Start- / Endseite: 513 - 517 Identifikator: ISSN: 0028-0836
CoNE: https://pure.mpg.de/cone/journals/resource/954925427238