AbstractThree crosslinked polymers were prepared via condensation polymerization between triethanolamine and glycerol [(25:75%), (50:50%) and (0:100%) (G:TEA)] with maleic anhydride which produced polymers I, II and III consequently. All the prepared polymers were doped with metal salts (CuCl2, NiCl2 and FeCl2). D.C. conductivity was measured in the temperature range of (298–373K), the result showed that the electrical conductivity increased several orders of magnitude with increasing temperature, the activation energy decreased with increasing conductivity. A.C. measurement is used to calculate the dielectric constant for the polymers in both pure and doped state
Title: Study of electrical and dielectric properties of conducting polymers Author: Mgr. Martin Varg...
Complexing salts, like lithium perchlorate, form interesting polymer electrolytes with terpolymers c...
Dielectric and conductivity studies has been performed in order to study the microscopic structure a...
Three cross-linked polymers (I, II, and III) were prepared in different percent’s of triethanol- ami...
Abstract: Substituted polyaniline, poly (m-aminophenol) was synthesized by oxidative chemical polyme...
Terpolymer MAF synthesized by the polycondensation of melamine (M) and aniline (A) with formaldehyde...
Semiconductor materials based on metal high crosslinked-vinyl polymer composites were prepared throu...
In the work described in this Thesis some attempt has been made to correlate the structures, mode of...
The direct current (DC) and alternating current (AC) conductivity of polyurethane (PUR) derived from...
Electrical conductivity and thermopower are studied in the conducting polymer polypyrrole doped with...
In this paper the influence of dopant on the electrical properties of polymer prepared by chemical o...
New polymer electrolytes were synthesized and characterized based on a new polymer host. The motivat...
The objective of this work was to produce electrically conductive coatings of poly (3, 4–ethylenedi...
In this paper the influence of dopant on the electrical properties of polymer prepared by chemical r...
In this work, we studied the electrical conductivity behavior of waste Al reinforced polyester compo...
Title: Study of electrical and dielectric properties of conducting polymers Author: Mgr. Martin Varg...
Complexing salts, like lithium perchlorate, form interesting polymer electrolytes with terpolymers c...
Dielectric and conductivity studies has been performed in order to study the microscopic structure a...
Three cross-linked polymers (I, II, and III) were prepared in different percent’s of triethanol- ami...
Abstract: Substituted polyaniline, poly (m-aminophenol) was synthesized by oxidative chemical polyme...
Terpolymer MAF synthesized by the polycondensation of melamine (M) and aniline (A) with formaldehyde...
Semiconductor materials based on metal high crosslinked-vinyl polymer composites were prepared throu...
In the work described in this Thesis some attempt has been made to correlate the structures, mode of...
The direct current (DC) and alternating current (AC) conductivity of polyurethane (PUR) derived from...
Electrical conductivity and thermopower are studied in the conducting polymer polypyrrole doped with...
In this paper the influence of dopant on the electrical properties of polymer prepared by chemical o...
New polymer electrolytes were synthesized and characterized based on a new polymer host. The motivat...
The objective of this work was to produce electrically conductive coatings of poly (3, 4–ethylenedi...
In this paper the influence of dopant on the electrical properties of polymer prepared by chemical r...
In this work, we studied the electrical conductivity behavior of waste Al reinforced polyester compo...
Title: Study of electrical and dielectric properties of conducting polymers Author: Mgr. Martin Varg...
Complexing salts, like lithium perchlorate, form interesting polymer electrolytes with terpolymers c...
Dielectric and conductivity studies has been performed in order to study the microscopic structure a...