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Relationship between electrical treatment temperature

The structures of PFR and polyacenic polymers are shown in Fig. 16.9. Figure 16.10 shows the relationship between electrical conductivity and heat-treatment temperature. This shows that the electrical conductivity of polyacenic polymer is increased as the heat-treatment temperature is increased and there is a linear relationship between electrical conductivity and heat-treatment temperature. Therefore, an increase in electrical conductivity is caused by the growth of the polyacenic structure. Furthermore, the electrical... [Pg.603]

Chemical thermodynamics and kinetics provide the formalism to describe the observed dependencies of chemical-conformational reactions on the external physical state variables temperature, pressure, electric and magnetic fields. In the present account the theoretical foundations for the analysis of electrical-chemical processes are developed on an elementary level. It should be remarked that in most treatments of electric field effects on chemical processes the theoretical expressions are based on the homogeneous-field approximation of the continuum relationship between the total polarization and the electric field strength (Maxwell field). When, however, conversion factors that account for the molecular (inhomogeneous) nature of real systems are given, they are usually only applicable for nonpolar solvents and thus exclude aqueous solutions. Therefore, in the present study, particular emphasis is placed on expressions which relate experimentally observable system properties (such as optical or electrical quantities) with the applied (measured) electric field, and which include applications to aqueous solutions. [Pg.99]

Figure 4. Relationship between the electrical conductivity of PANA and the treatment temperature. Figure 4. Relationship between the electrical conductivity of PANA and the treatment temperature.
A carbon rod is used as a current collector for the positive electrode in dry cells. It is made by heating an extruded mixture of carbon (petroleum coke, graphite) and pitch which serves as a binder. A heat treatment at temperatures of about 1100 °C is used to carbonize the pitch and to produce a solid structure with low resistance. For example, Takahashi [23] reported that heat treatment reduced the specific resistance from 1 Q cm to 3.6xlO"1Qcm and the density increased from 1.7 to 2.02 gem- 1. Fischer and Wissler [24] derived an experimental relationship [Eq. (1)] between the electrical conductivity, compaction pressure, and properties of graphite powder ... [Pg.237]


See other pages where Relationship between electrical treatment temperature is mentioned: [Pg.153]    [Pg.6]    [Pg.77]    [Pg.282]    [Pg.690]    [Pg.318]    [Pg.440]    [Pg.245]   
See also in sourсe #XX -- [ Pg.92 , Pg.95 ]




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