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Capacitors, conducting polymers

Barsukov V., Chivikov S. The Capacitor concept of the current-producing process mechanism in polyaniline-type conducting polymers. Electrochim. Acta 1996 41 1773-79. [Pg.73]

Modified graphite expanded graphite Si- and Sn- composites alloys conducting polymers lithium-ion batteries metal-air batteries electrochemical capacitors. [Pg.311]

As it logically follows from the considered mechanism and the existing experimental data, PANI-type conductive polymers can certainly be used to improve the characteristics of electrochemical capacitors. According to our estimations, a specific capacity of electrodes with conductive polymers could be increased by as much as to 3-5 times over that of the classical carbon electrodes. [Pg.319]

The detailed research and development on the promising hybrid system for electrochemical capacitors with conducting polymers is described in paper [9]. Besides the main electrochemical process (Figure 7), the side... [Pg.319]

In recent several years, super-capacitors are attracting more and more attention because of their high capacitance and potential applications in electronic devices. The performance of super-capacitors with MWCNTs deposited with conducting polymers as active materials is greatly enhanced compared to electric double-layer super-capacitors with CNTs due to the Faraday effect of the conducting polymer as shown in Fig. 9.18 (Valter et al., 2002). Besides those mentioned above, polymer/ CNT nanocomposites own many potential applications (Breuer and Sundararaj, 2004) in electrochemical actuation, wave absorption, electronic packaging, selfregulating heater, and PTC resistors, etc. The conductivity results for polymer/CNT composites are summarized in Table 9.1 (Biercuk et al., 2002). [Pg.199]

Baytron , a conducting polymer [154] derived from 3,4-ethylenedioxythiophene, is a commercially available product that can be used as an antistatic or electrostatic coating of plastics and glass. Moreover, it has successfully been applied as counterelectrode in capacitors and as a hole-injection layer in organic light-emitting diodes [155]. [Pg.638]

An electrochemical capacitor is a device that stores electrical energy in the electrical double layer that forms at the interface between an electrolytic solution and an electronic conductor. The term applies to charged carbon—carbon systems as well as carbon-battery electrode and conducting polymer electrode combinations sometimes called ultracapacitors, supercapacitors, or hybrid capacitors. [Pg.9]

One area where the relationship between the structure of the polymer matrix and the physical processes of the thin layer has been studied in detail is that of electrodes modified with polymer films. The polymer materials investigated in these studies include both conducting and redox polymers. Such investigations have been driven by the many potential applications for these materials. Conducting polymers have been applied in sensors, electrolytic capacitors, batteries, magnetic storage devices, electrostatic loudspeakers and artificial muscles. On the other hand, the development of electrodes coated with redox polymers have been used extensively to develop electrochemical sensors and biosensors. In this discussion,... [Pg.244]

The use of the high internal area of electronically conducting polymers should make such materials good (cheap) electrochemical capacitors (see Section 13.19) where there would be much to gain (economically ) over, say, porous Ru02. In condenser discharge, no net current flows so that ohmic losses in pores are not relevant. [Pg.108]

Barsukov V. and Chivikov S., The Capacitor Concept of the Current-Producing Process Mechanism in Polyaniline-Type Conducting Polymers. Electrochimica Acta, 1996 41 1773-1779. [Pg.838]

Ionic Conducting Polymers for Applications in Batteries and Capacitors... [Pg.417]

In the case of ion conductive polymers, gel polymer electrolytes which consist of a polymer matrix, organic solvents and supporting electrolyte, were introduced as novel nonaqueous electrolyte systems in electrochemical applications, such as rechargeable batteries and electric double layer capacitors [3-5], Recently, considerable attention has been devoted to the application of gel poly-... [Pg.417]

Ion conducting polymers may be preferable in these devices electrolytes because of their flexibility, moldability, easy fabrication and chemical stability (for the same reasons that they have been applied to lithium secondary batteries [19,48,49]). The gel electrolyte systems, which consist of a polymeric matrix, organic solvent (plasticizer) and supporting electrolyte, show high ionic conductivity about 10 5 S cnr1 at ambient temperature and have sufficient mechanical strength [5,7,50,51], Therefore, the gel electrolyte systems are superior to solid polymer electrolytes and organic solvent-based electrolytes as batteries and capacitor materials for ambient temperature operation. [Pg.430]

In this section, we review recent developments of redox capacitors with conducting polymer electrodes and EDLC with SPE or gel electrolyte systems. [Pg.430]

Recent application of conducting polymers for electrochemical capacitors has been reviewed. The ionically conducting polymers have the potential to replace wet-type capacitors by dry-type ones. Especially important are the gel electrolyte systems whose ionic conductivity is high, and thus high capacitance can be obtained with them in EDLC. We believe that the combination of high surface area... [Pg.439]


See other pages where Capacitors, conducting polymers is mentioned: [Pg.373]    [Pg.64]    [Pg.66]    [Pg.321]    [Pg.159]    [Pg.316]    [Pg.309]    [Pg.309]    [Pg.428]    [Pg.432]    [Pg.432]    [Pg.43]    [Pg.45]    [Pg.307]    [Pg.454]    [Pg.546]    [Pg.527]    [Pg.158]    [Pg.443]    [Pg.311]    [Pg.351]    [Pg.43]    [Pg.45]   
See also in sourсe #XX -- [ Pg.5 ]




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