Production and Study of Electrical Characteristics for one of the Dual Estelline Polymers
DOI:
https://doi.org/10.32628/IJSRST52310535Keywords:
Voltage-Current Characteristics, Conductivity, Conductor MotionAbstract
This study involved the development of a poly-2,4-hexamine-1,5 diol. Conductivity mechanics were investigated by tracking voltage-current characteristics, conductivity (time-current), and conductor motion as a function of temperature between 313 and 353 ok. The principal slopes of (I-t) curves reveal that an increase in temperature results in a rise in conductivity and conductor-carrier mobility (mobility µ). In addition, the activation energy was determined to be 0.897 via a calculation based on the curve formed by (-1/T). Also, the hysteresis of electrical conductivity at different temperatures was studied while the voltage stayed the same.
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