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Article Dans Une Revue Journal of Applied Physics Année : 2016

Implementation of polarization processes in a charge transport model applied on poly(ethylene naphthalate) films

M.-Q. Hoang
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Séverine Le Roy
Laurent Boudou
G. Teyssedre

Résumé

One of the difficulties in unravelling transport processes in electrically insulating materials is the fact that the response, notably charging current transients, can have mixed contributions from orientation polarization and from space charge processes. This work aims at identifying and characterizing the polarization processes in a polar polymer in the time and frequency-domains and to implement the contribution of the polarization into a charge transport model. To do so, Alternate Polarization Current (APC) and Dielectric Spectroscopy measurements have been performed on poly(ethylene naphthalene 2,6-dicarboxylate) (PEN), an aromatic polar polymer, providing information on polarization mechanisms in the time- and frequency-domain, respectively. In the frequency-domain, PEN exhibits 3 relaxation processes termed β, β* (sub-glass transitions), and α relaxations (glass transition) in increasing order of temperature. Conduction was also detected at high temperatures. Dielectric responses were treated using a simplified version of the Havriliak-Negami model (Cole-Cole (CC) model), using 3 parameters per relaxation process, these parameters being temperature dependent. The time dependent polarization obtained from the CC model is then added to a charge transport model. Simulated currents issued from the transport model implemented with the polarization are compared with the measured APCs, showing a good consistency between experiments and simulations in a situation where the response comes essentially from dipolar processes.
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Dates et versions

hal-03169883 , version 1 (04-10-2022)

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M.-Q. Hoang, Séverine Le Roy, Laurent Boudou, G. Teyssedre. Implementation of polarization processes in a charge transport model applied on poly(ethylene naphthalate) films. Journal of Applied Physics, 2016, 119 (22), pp.224105. ⟨10.1063/1.4953646⟩. ⟨hal-03169883⟩
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