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Showing 1 to 6 of 6 for “"Ion-exchange doping"”.

  1. Thermoelectric Properties of Organic Polymers

    Thermoelectric devices present an enticing solution for harnessing waste thermal energy from industrial processes and converting it into electrical power. Due to their cost-effectiveness and potential in flexible electronic applications, organic thermoelectrics have attracted considerable …

    cambridge Repository record for Thermoelectric Properties of Organic Polymers (opens in a new tab)

  2. Thermoelectric and charge transport properties in doped and aligned conjugated polymers

    This thesis presents an investigation aimed at enhancing the thermoelectric power factor for semicrystalline conjugated polymers, particularly PBTTT, through methodologies such as ion-exchange doping, high-temperature rubbing and electrochemical doping. Central to this investigation is a deepened …

    cambridge Repository record for Thermoelectric and charge transport properties in doped and aligned conjugated polymers (opens in a new tab)

  3. Thermoelectric and Charge Transport in Doped Semi-Crystalline Polymers

    … to the exotic properties and potential applications in flexible displays, light-emitting diodes, solar cells as well as thermoelectrics. Compared with their inorganic counterparts, OSCs have several advantageous features including low cost, lightweight, mechanically robustness, ease of synthesis …

    cambridge Repository record for Thermoelectric and Charge Transport in Doped Semi-Crystalline Polymers (opens in a new tab)

  4. Charge and Thermoelectric Transport in Semicrystalline Conjugated Polymers and Single-Walled Carbon Nanotube Networks

    Due to their flexibility, solution-processability and continuously improving electronic performance, conjugated polymer semiconductors and single-walled carbon nanotube (SWCNT) networks are promising candidates for wearable electronics, flexible optoelectronic devices and thermoelectric generators. …

    cambridge Repository record for Charge and Thermoelectric Transport in Semicrystalline Conjugated Polymers and Single-Walled Carbon Nanotube Networks (opens in a new tab)

  5. Charge Transport in Field-Effect and Ion-Gel Gated Conjugated Polymers

    … mostly been driven by the design, characterisation, and comprehension of new conjugated polymers. Significant effects can arise from making minor alterations to the monomers and building blocks, which impacts charge transport; however, some of mechanisms responsible for the effects have yet to …

    cambridge Repository record for Charge Transport in Field-Effect and Ion-Gel Gated Conjugated Polymers (opens in a new tab)

  6. Thermal conductivity in organic semiconducting polymers

    … materials, which accounts for the direct conversion between thermal energy and electrical energy, has been practically used to build devices for many purposes, including thermoelectric generators for producing clean electricity from temperature difference and thermoelectric coolers for precisely …

    cambridge Repository record for Thermal conductivity in organic semiconducting polymers (opens in a new tab)