SOME CONSIDERATIONS ABOUT THE ANALYSIS OF THERMOSTIMULATED DEPOLARIZATION PEAKS

被引:110
作者
TEYSSEDRE, G
LACABANNE, C
机构
[1] Solid State Physics Laboratory, Paul Sabatier University, Toulouse, 31062
关键词
D O I
10.1088/0022-3727/28/7/029
中图分类号
O59 [应用物理学];
学科分类号
摘要
The dielectric relaxation mode associated with the liquid-glass transition of a fluorinated co-polymer, P(VDF-TRFE) 75/25 mol%, has been resolved experimentally by the technique of fractional polarizations, and a discrete distribution of relaxation times has been obtained. This distribution shows a compensation pattern characteristic of the glass transition/relaxation of polymers. Attention has been paid to the effect of the experimental set-up on the obtained activation parameters by using polarization windows Delta T-p of 0, 5 and 10 degrees C. It was shown that the activation energy increased as the polarization window was reduced. The latter also had a slight influence on the compensation parameters. This behaviour has been explained in terms of an increase in the width of the distribution of relaxation times associated with elementary peaks as Delta T-p increased. Thus, the Bucci-Fieschi-Guidi (BFG) analysis based on monokinetic relaxations is no longer valid as this distribution broadens. Overall, the use of Delta T-p = 5 degrees C as polarization window constituted the best compromise between validity of the BFG analysis and the experimental resolution of the depolarization current. The errors in the compensation temperature have been estimated and a test has been applied in order to reject the hypothesis of a compensation pattern due to a propagation of experimental errors. Thus, the compensation phenomena described true kinetic effects, independently from the experimental set-up. It was shown that data pertaining to different methods of analysis could also describe a compensation law, which was actually statistical in nature.
引用
收藏
页码:1478 / 1487
页数:10
相关论文
共 44 条
[1]  
BARRIERES D, 1994, THESIS U TOULOUSE
[2]  
BERNES A, 1992, POLYMER, V32, P4882
[3]  
BOYER RF, 1975, J POLYM SCI PS, V50, P189
[4]   IONIC THERMOCONDUCTIVITY . METHOD FOR INVESTIGATION OF POLARIZATION IN INSULATORS [J].
BUCCI, C ;
FIESCHI, R .
PHYSICAL REVIEW LETTERS, 1964, 12 (01) :16-&
[5]   IONIC THERMOCURRENTS IN DIELECTRICS [J].
BUCCI, C ;
FIESCHI, R ;
GUIDI, G .
PHYSICAL REVIEW, 1966, 148 (02) :816-&
[6]   IONIC THERMAL CURRENT STUDY OF ALPHA-'-PROCESS IN POLY(HEXAMETHYLENE-ADIPAMIDE) [J].
CHATAIN, D ;
GAUTIER, P ;
LACABANNE, C .
JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS, 1973, 11 (08) :1631-1640
[7]   COMPUTATION OF EXPONENTIAL INTEGRAL AS RELATED TO ANALYSIS OF THERMAL PROCESSES [J].
CHEN, R .
JOURNAL OF THERMAL ANALYSIS, 1974, 6 (05) :585-586
[8]  
CHEN R, 1981, ANAL THERMALLY STIMU, pCH3
[9]   PEAK PARAMETERS FROM PEAK AREA TO HEIGHT RATIO IN THERMALLY STIMULATED DEPOLARIZATION AND THERMO-LUMINESCENCE [J].
CHRISTODOULIDES, C ;
APEKIS, L ;
PISSIS, P .
JOURNAL OF APPLIED PHYSICS, 1988, 64 (03) :1367-1370
[10]   NEW SECONDARY RELAXATION IN POLYMERIC GLASSES - A POSSIBLE COMMON FEATURE OF THE GLASSY STATE [J].
COLMENERO, J ;
ALEGRIA, A ;
ALBERDI, JM ;
DELVAL, JJ ;
UCAR, G .
PHYSICAL REVIEW B, 1987, 35 (08) :3995-4000