Poly(ethy1ene terephthalate) was crystallized from the glassy state at 120 and 200Β°C. The structural organization of samples, after the primary and secondary crystallizations, was analyzed by density, X-rays, infrared and transport properties of dichloromethane vapor. The values of crystallinity der
Transport and dielectric properties of poly(ethylene terephthalate) as determined via electrochemical techniques
β Scribed by M. J. Kloppers; F. Bellucci; R. M. Latanision; J. E. Brennan
- Publisher
- John Wiley and Sons
- Year
- 1993
- Tongue
- English
- Weight
- 749 KB
- Volume
- 48
- Category
- Article
- ISSN
- 0021-8995
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β¦ Synopsis
The electrochemical impedance spectroscopy ( EIS ) technique was used to evaluate the water transport (diffusion and equilibrium water uptake) and the dielectric properties of free-standing poly (ethylene terephthalate) ( P E T ) membranes a t 40Β°C. Permeability and diffusion coefficients were also obtained using the Payne cup method and the MacBain quartz spring balance to assess the reliability of the EIS method when compared to other techniques. In addition, an electromigration (dc) technique was used to estimate the NaCl diffusion coefficient across PET films. ResuIts obtained indicate that PET is highly permeable to water and much less permeable to salt. The water diffusion coefficient, D , varies from 2.11 X lo-' to 9.97 X lo-' cm2 s-l for thicknesses between 22 and 205 pm, whereas the equilibrium water uptake, W , varies from 0.54 to 0.95 wt % for the same given range of thicknesses. The average calculated dielectric constant of the free-standing PET films is 3.6. An estimate of the NaCl diffusion coefficient, D,, is 9.34 X cm2 s-'. Transport properties results obtained via the electrochemical technique are in reasonable agreement with those obtained with the classical gravimetric method.
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Films of cellulose acetate and poly(ethy1ene terephthalate) were irradiated by different doses of alpha-radiation and then annealed for different times. The variation of the dielectric constant with the duration of irradiation, annealing and storage is measured and discussed. The results are interpr
## Abstract We present a comparative study of melt spinning of poly(trimethylene 2,6βnaphthalenedicarboxylate) (PTN) and poly(ethylene terephthalate) (PET) fibers with respect to the effect of winding speed (2000β6000 m/min): Structural changes were followed by Xβray analysis, calorimetry, and meas