2016
DOI: 10.1155/2016/5842763
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Review on Optical and Electrical Properties of Conducting Polymers

Abstract: We reviewed optical and electrical properties of conjugated polymers. The charge transport models to describe the hole and electron transport mechanism are also included in the electrical properties of conjugated polymers. The effect of optical and electrical properties after doping is also indexed in this paper.

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Cited by 30 publications
(12 citation statements)
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“…Conversely, in n -type doping, electrons from the dopant species move to the LUMO of the polymer, resulting in increased electron density. Hence, the density and mobility of charge carriers can be tuned by doping [ 33 , 34 , 35 , 36 ].…”
Section: Conductive Mechanismmentioning
confidence: 99%
“…Conversely, in n -type doping, electrons from the dopant species move to the LUMO of the polymer, resulting in increased electron density. Hence, the density and mobility of charge carriers can be tuned by doping [ 33 , 34 , 35 , 36 ].…”
Section: Conductive Mechanismmentioning
confidence: 99%
“…There is academic interest in p-type doping because of the high stability of positively charged carriers. [70][71][72] The band structure of polypyrrole with different stages of doping was tested. Pristine undoped polypyrrole acts as a semiconductor material with a high bandgap of 3.16 eV and when it is doped with p-type materials the polymer backbone gets oxidized, and the loss of p electrons from the polymer backbone occurs.…”
Section: Electrical and Electronic Propertiesmentioning
confidence: 99%
“…There is academic interest in p-type doping because of the high stability of positively charged carriers. 70–72 …”
Section: Electrical and Electronic Propertiesmentioning
confidence: 99%
“…CP's are extremely sought-after and exhilarating materials, on account of the positive blend towards electronic and mechanical properties of ferrites for the use in a broad assortment of innovative applications, in such a way researchers have newly focused on the synthesis of organic-inorganic amalgam systems made up of polymer nanocomposites (Bajpai et al, 2016;Kaur et al, 2015). These amalgams offer high adaptability in the conditions of electrical, mechanical and thermal properties can accomplish wanted synergetic impacts, facilitate existing applications in the fields of sensors, supercapacitors, solar cells, light-emitting diode devices, etc.…”
Section: Introductionmentioning
confidence: 99%