Abstract
Charge trap in amorphous perfluoro-polymer electret is studied, focusing on electron trap site and trap energy. Low-energy inverse photoelectron spectroscopy is adopted to measure solid-state electron affinity (EA) of cyclic transparent optical polymer (CYTOP). EA of CYTOP CTL-S is discovered by compensating the unwanted charge-up effect. Negatively-charged electret materials (polyethylene, ethylene-tetra-fluoro-ethylene, poly-tetra-fluoro-ethylene, and CYTOP) are analyzed by quantum mechanical calculation. Density functional theory with long-range correction is adopted to analyze orbital energies of single molecular systems. Intramolecular distribution of trapped electron and EA are investigated. Calculated electron affinities of CYTOP polymers with different end group are qualitatively in accordance with trapped charge stability measured with thermal stimulated discharge, signifying that electron affinities obtained with the present simulation can be used as an index of amorphous polymer electret.
Author supplied keywords
- 104 Carbon and related materials
- 20 Organic and soft materials (colloids
- 202 Dielectrics / Piezoelectrics / Insulators
- 401 1st principle calculations
- 502 Electron spectroscopy
- CYTOP
- Electret
- density functional theory
- electron affinity (EA)
- fluorinated polymer
- gel
- liquid crystals
- low-energy inverse photoelectron spectroscopy (LEIPS)
- polymers)
Cite
CITATION STYLE
Kim, S., Suzuki, K., Sugie, A., Yoshida, H., Yoshida, M., & Suzuki, Y. (2018). Effect of end group of amorphous perfluoro-polymer electrets on electron trapping. Science and Technology of Advanced Materials, 19(1), 486–494. https://doi.org/10.1080/14686996.2018.1477395
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.