Free-volume hole model for positronium formation in polymers: surface studies
Hui Cao, Ruixue Zhang, J-P Yuan, C.-X Huang, Y. C. Jean, Ryoichi Suzuki, Toshiyuki Ohdaira, B. Nielsen
Abstract
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Hui Cao, Ruixue Zhang, J-P Yuan, C.-X Huang, Y. C. Jean, Ryoichi Suzuki, Toshiyuki Ohdaira, B. Nielsen
Abstract
Open-access reader
Positron annihilation lifetime and Doppler broadening of annihilation radiation experiments are performed in a polyurethane film using the mono-energetic slow positron probe as a function of positron energies. Significant variations of positron annihilation signals are observed at a short distance from the surface . The ortho-positronium lifetime in the polymer increases near the surface, while its intensity decreases. The intensity results are consistent with the description of a free-volume hole model for positronium formation proposed by Brandt, Berko and Walker. This study further confirms that positron annihilation spectroscopy is a sensitive probe for the characterization of physical properties of sub-nanometre defects, such as free volumes and holes for polymeric materials.
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Positron annihilation lifetime and Doppler broadening of annihilation radiation experiments are performed in a polyurethane film using the mono-energetic slow positron probe as a function of positron energies. Significant variations of positron annihilation signals are observed at a short distance from the surface . The ortho-positronium lifetime in the polymer increases near the surface, while its intensity decreases. The intensity results are consistent with the description of a free-volume hole model for positronium formation proposed by Brandt, Berko and Walker. This study further confirms that positron annihilation spectroscopy is a sensitive probe for the characterization of physical properties of sub-nanometre defects, such as free volumes and holes for polymeric materials.
Key concepts: Positronium, Positron, Annihilation, Annihilation radiation, Doppler broadening, Positron annihilation, Positron annihilation spectroscopy, Materials science