1,025
Views
11
CrossRef citations to date
0
Altmetric
Original Articles

A Linear Trap for Studying the Interaction of Nanoparticles with Supersaturated Vapors

, , &
Pages 683-691 | Received 10 Mar 2015, Accepted 01 Jun 2015, Published online: 24 Jul 2015

REFERENCES

  • Antonsson, E., Bresch, H., Lewinski, R., Wassermann, B., Leisner, T., Graf, C., Langer, B., and Rühl, E. (2013). Free Nanoparticles Studied by Soft X-rays. Chem. Phys. Lett., 559:1–11.
  • Bluhm, H., Andersson, K., Araki, T., Benzerara, K., Brown, G. E., Dynes, J. J., Ghosal, S., Gilles, M. K., et al. (2006). Soft X-ray Microscopy and Spectroscopy at the Molecular Environmental Science Beamline at the Advanced Light Source. J. Electron Spectrosc. Relat. Phenom., 150(2–3):86–104.
  • Brown, D. E., George, S. M., Huang, C., Wong, E. K. L., Rider, K. B., Smith, R. S., and Kay, B. D. (1996). H2O Condensation Coefficient and Refractive Index for Vapor-Deposited ice from Molecular Beam and Optical Interference Measurements. J. Phys. Chem., 100(12):4988–4995.
  • Brown, J. T., Jr., and Schowengerdt, F. D. (1979). Analysis of a Continuous Flow Parallel Plate Thermal Diffusion Cloud Chamber. J. Aerosol Sci., 10(3):339–348.
  • Chou, C. H., and Phillips, J. (1992). Plasma Production of Metallic Nanoparticles. J. Mat. Res., 7(8):2107–2113.
  • Daly, N. R. (1960). Scintillation Type Mass Spectrometer Ion Detector. Rev. Sci. Instrum., 31(3):264–267.
  • Davis, E. J. (2006). A History and State-of-the-Art of Accommodation Coefficients. Atmos. Res., 82(3–4):561–578.
  • Gumbel, J., and Megner, L. (2009). Charged Meteoric Smoke as Ice Nuclei in the Mesosphere: Part 1-A Review of Basic Concepts. J. Atmos. Solar Terrestrial Phys., 71(12)1225–1235.
  • Janzen, C., Kleinwechter, H., Knipping, J., Wiggers, H., and Roth, P. (2002). Size Analysis in Low-Pressure Nanoparticle Reactors: Comparison of Particle Mass Spectrometry with in Situ Probing Transmission Electron Microscopy. J. Aerosol Sci., 33(6):833–841.
  • Keesee, R. G. (1989). Nucleation and Particle Formation in the Upper-Atmosphere. J. Geophys. Res. Atmos., 94(D12):14683–14692.
  • Langmuir, I. (1918). The Adsorption of Gases on Plane Surfaces of Glass, Mica and Platinum. J. Am. Chem. Soc., 40(9):1361–1403.
  • Langsdorf, A. (1939). A Continuously Sensitive Diffusion Cloud Chamber. Rev. Sci. Instrum., 10(3):91–103.
  • Liu, J. Y. (2005). Scanning Transmission Electron Microscopy and its Application to the Study of Nanoparticles and Nanoparticle Systems. J. Electron Micros., 54(3):251–278.
  • Määttänen, A., Vehkamäki, H., Lauri, A., Merikallio, S., Kauhanen, J., Savijärvi, H., and Kulmala, M. (2005). Nucleation Studies in the Martian Atmosphere. J. Geophys. Res. Planets 110(E2).
  • Majima, T., Santambrogio, G., Bartels, C., Terasaki, A., Kondow, T., Meinen, J. and Leisner, T. (2012). Spatial Distribution of Ions in a Linear Octopole Radio-Frequency Ion Trap in the Space-Charge Limit. Phys. Rev. A 85(5):085107.
  • Meinen, J., Eritt, M., Bartels, C., Terasaki, A., Kondow, T., Meinen, J., and Leisner, T. (2012). Optical Properties of Free Sub-10-nm Diameter Fe2O3 Nanoparticles Studied by Broad-band Cavity Enhanced Absorption Spectroscopy (BB-CEAS). Appl. Phys. B, 108(3):641–647.
  • Meinen, J., Khasminskaya, S., Habig, J. C., and Leisner, T. (2010a). Core Level Photoionization on Free Sub-10-nm Nanoparticles Using Synchrotron Radiation. Rev. Sci. Instrum., 81(8):053141.
  • Meinen, J., Khasminskaya, S., Eritt, M., Leisner, T., Antonsson, E., Langer, B., and Ruehl, E. (2010b). The TRAPS Apparatus: Enhancing Target Density of Nanoparticle Beams in Vacuum for X-ray and Optical Spectroscopy. Aerosol Sci. Technol., 44(4):316–328.
  • Murphy, D. M. (2007). The Design of Single Particle Laser Mass Spectrometers. Mass Spectrom. Rev., 26(2):150–165.
  • Murphy, D. M., and Koop, T. (2005). Review of the Vapour Pressures of Ice and Supercooled Water for Atmospheric Applications. Quart. J. Royal Meteor. Soc., 131(608):1539–1565.
  • Mysak, E. R., Starr, D. E., Wilson, K. R., and Bluhm, H. (2010). Note: A Combined Aerodynamic Lens/Ambient Pressure X-ray Photoelectron Spectroscopy Experiment for the On-stream Investigation of Aerosol Surfaces. Rev. Sci. Instrum., 81(1):016106.
  • Nishiyama, H., Koizumi, M., Ogawa, K., Kitamura, S., Konyuba, Y., Watanabe, Y., Ohbayashi, N., Fukuda, M., et al. (2014). Atmospheric Scanning Electron Microscope System with an Open Sample Chamber: Configuration and Applications. Ultramicroscopy 147:86–97.
  • Pruppacher, H. R., and Klett, J. D. (2004). Microphysics of Clouds and Precipitation. Kluwer, Dordrecht, Netherlands.
  • Rapp, M., and Thomas, G. E. (2006). Modeling the Microphysics of Mesospheric Ice Particles: Assessment of Current Capabilities and Basic Sensitivities. J. Atmos. Solar Terrestrial Phys., 68(7):715–744.
  • Rogers, D. C. (1988). Development of a Continuous Flow Thermal Gradient Diffusion Chamber for Ice Nucleation Studies. Atmos. Res., 22(2):149–181.
  • Salmeron, M., and Schlögl, R. (2008). Ambient Pressure Photoelectron Spectroscopy: A New Tool for Surface Science and Nanotechnology. Surf. Sci. Rep., 63(4):169–199.
  • Saxena, V. K., and Carstens, J. C. (1971). On the Operation of Cylindrical Thermal Diffusion Cloud Chambers. J. de Recherches Atmospheriques 5:11–23.
  • Severynse, G. T. (1964). A Portable Cloud Nuclei Counter. J. de Recherches Atmospheriques 1:11–16.
  • Szabó, D. V. (2013). Microwave Plasma Synthesis of Nanoparticles. Microwaves in Nanoparticle Synthesis: Fundamentals and Applications, S. Horikoshi and N. Serpone (Eds.), Wiley-VCH, Weinheim, pp. 271–310.
  • van der Veen, R. M., Kwon, O.-H., Tissot, A., Hauser, A., and Zewail, A. H. (2013). Single-Nanoparticle Phase Transitions Visualized by Four-Dimensional Electron Microscopy. Nat Chem., 5(5):395–402.
  • Vollath, D., Szabo, D. V., Taylor, R. D., and Willis, J. O. (1997). Synthesis and Magnetic Properties of Nanostructured Maghemite. J. Mat. Res., 12(8):2175–2182.
  • Wang, S., and M. V. Johnston (2006). Airborne Nanoparticle Characterization with a Digital Ion Trap–Reflectron Time of Flight Mass Spectrometer. Int. J. Mass Spectrom., 258(1–3):50–57.
  • Wang, S., Zordan, C. A., and Johnston, M. V. (2006). Chemical Characterization of Individual, Airborne Sub-10-nm Particles and Molecules. Anal. Chem., 78(6):1750–1754.
  • Wilson, K. R., Shengli, Z., Jinian, S., Rühl, E., Leone, S. R., Schatz, G. C., and Ahmed, M. (2007). Size-Dependent Angular Distributions of Low-Energy Photoelectrons Emitted from NaCI Nanoparticles. Nano Lett., 7(7):2014–2019.
  • Wu, C.-K., Yin, M., O'Brien, S., and Koberstein, J. T. (2006). Quantitative Analysis of Copper Oxide Nanoparticle Composition and Structure by X-ray Photoelectron Spectroscopy. Chem. Mat., 18(25):6054–6058.
  • Zordan, C. A., Pennington, M. R., and Johnston, M. V. (2010). Elemental Composition of Nanoparticles with the Nano Aerosol Mass Spectrometer. Anal. Chem., 82(19):8034–8038.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.