2014
DOI: 10.1016/j.electacta.2013.11.174
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Optical and electrochromic characterizations of four 2,5-dithienylpyrrole-based conducting polymer films

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Cited by 35 publications
(27 citation statements)
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“…EC parameters of all solid‐state devices are listed in Table . Switching time, one of the most important characteristics of EC materials, was defined as the time required for achieving 90% of the total/ultimate change in percent transmission . For BMIMBF 4 and BMIMPF 6 ‐based devices, optical switching times T90% at 650 nm were 17.5 and 19.1 sec, respectively, from the bleaching state to the coloration state, and 16.4 and 15.2 sec, respectively, from the coloration state to the bleaching state.…”
Section: Resultsmentioning
confidence: 99%
“…EC parameters of all solid‐state devices are listed in Table . Switching time, one of the most important characteristics of EC materials, was defined as the time required for achieving 90% of the total/ultimate change in percent transmission . For BMIMBF 4 and BMIMPF 6 ‐based devices, optical switching times T90% at 650 nm were 17.5 and 19.1 sec, respectively, from the bleaching state to the coloration state, and 16.4 and 15.2 sec, respectively, from the coloration state to the bleaching state.…”
Section: Resultsmentioning
confidence: 99%
“…Recently, scientists have paid attention to the applications of CPs as electrode materials in electrochromic devices (ECDs) because CPs are capable of changing their optical properties at various voltages [4]. CPs have been extensively used for several regions, such as solar cells [5,6], catalysts [7][8][9], polymer light-emitting diodes [10][11][12], supercapacitors [13,14], sensors [15,16], and ECDs [17,18].…”
Section: Introductionmentioning
confidence: 99%
“…Prussian Blue, 16 WO3 17 and viologens 18 ), conducting polymers (CPs) 19 have attracted particular attention due to their outstanding colouration efficiency, fast switching times, multichromism, high optical and electrochemical stability, thin film mechanical flexibility and cost effectiveness. 20,21,22 In fact, several works have been reported the EC behaviour of the polypyrrole, 23,24,25 polyaniline (PANI), 26 polythiophene 27,28 and their derivatives, as well as the fabrication of efficient complementary ECDs comprising CPs (e.g. polythiophenederivatives@PANI 29,30 and polypyrrole@polythiophene-derivatives 31 ).…”
mentioning
confidence: 99%