Volume 137, 2008

Charge and charging of nanoparticles in a SiH4 rf-plasma

Abstract

Plasma-produced nanoparticles are of interest for many applications. They have very specific properties that can vary greatly from those in the atomic and bulk materials, including thermodynamic properties, such as a reduced melting temperature, and optical properties, such as blue-shifted blackbody radiation. Since a plasma is dominated by free electrons, charge related properties, like a reduced work function for electron attachment and increased work function for photo ionization, are of major importance. In situdetection of nanoparticles inside a plasma is difficult. Hence, indirect methods including changes in optical emission, plasma voltage and currents are used to study particle growth. Here, electron density measurements in the plasma are presented using an ultrafast microwave resonance technique (time resolution below 1 μs). This technique allows studying the charge and charging kinetics of nanoparticles within the initial milliseconds of their growth.

Article information

Article type
Paper
Submitted
05 Feb 2007
Accepted
14 Feb 2007
First published
16 Jul 2007

Faraday Discuss., 2008,137, 115-126

Charge and charging of nanoparticles in a SiH4 rf-plasma

W. W. Stoffels, M. Sorokin and J. Remy, Faraday Discuss., 2008, 137, 115 DOI: 10.1039/B701763D

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