Ion beam charging of silicon nanoparticles in helium background gas: Design of the ion beam aerosol charger
Author:
Publisher
AIP Publishing
Subject
Instrumentation
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1575922
Reference34 articles.
1. Positioning of nanometer-sized particles on flat surfaces by direct deposition from the gas phase
2. Charging of single Si nanocrystals by atomic force microscopy
3. Aerosol classification by electric mobility: apparatus, theory, and applications
4. Measurement of Ambient Aerosols by the Differential Mobility Analyzer Method: Concepts and Realization Criteria for the Size Range Between 2 and 500 nm
5. Sizing nanoparticles and ions with a short differential mobility analyzer
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1. Size and structural characterization of Si nanocrystal aggregates from a low pressure nonthermal plasma reactor;Powder Technology;2020-08
2. Determination of nanoparticle collision cross section distribution functions in low pressure plasma synthesis reactors via ion mobility spectrometry;Nano Futures;2019-02-07
3. Developments in Unipolar Charging of Airborne Particles: Theories, Simulations and Measurements;Aerosol and Air Quality Research;2017
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