2021
DOI: 10.1016/j.optmat.2020.110766
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Electrical and optical properties of electrochromic device with WO3:Mo film prepared by RF magnetron Co-Sputtering

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Cited by 22 publications
(10 citation statements)
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“…27 Therefore, magnetron sputtering is an effective method to realize stable and reliable electrochromic performance of NiO x films in Li + electrolytes. [28][29][30] For example, Qiu et al 31 prepared NiO x films by direct current magnetron sputtering which achieved up to 62% transmittance change in 1 M PC/LiClO 4 , but their colouring and bleaching times were as long as 17 and 9.8 s, respectively. Acua et al 32 adjusted the radio frequency power to vary the crystallinity and grain size of the NiO films, achieving 55% transmittance change in 1 M PC/LiClO 4 , but the colouring and bleaching times were still 4.1 and 9.9 s, respectively.…”
Section: Introductionmentioning
confidence: 99%
“…27 Therefore, magnetron sputtering is an effective method to realize stable and reliable electrochromic performance of NiO x films in Li + electrolytes. [28][29][30] For example, Qiu et al 31 prepared NiO x films by direct current magnetron sputtering which achieved up to 62% transmittance change in 1 M PC/LiClO 4 , but their colouring and bleaching times were as long as 17 and 9.8 s, respectively. Acua et al 32 adjusted the radio frequency power to vary the crystallinity and grain size of the NiO films, achieving 55% transmittance change in 1 M PC/LiClO 4 , but the colouring and bleaching times were still 4.1 and 9.9 s, respectively.…”
Section: Introductionmentioning
confidence: 99%
“…According to a recent study, substitutional doping of metal ions is a good way to adjust the electronic structure and electrical properties of WO 3 [11,12]. So far, various researchers have been investigating transition metal ions as dopants to study the structural, electrical and band edge properties of WO 3 , including Mo [13], Co [14], Ni [15], Fe [16]. Cu [17,18] Mn, [19] and Cd [20].…”
Section: Introductionmentioning
confidence: 99%
“…[ 8 ] However, Y doping, which may form Y 2 O 3 oxide in membrane oxides and boost sensing performance, has not been reported [ 12 ]. In this study, WO 3 and Y are co-sputtered on a substrate to improve the sensing behaviors and material properties [ 13 , 14 ]. RTA annealing at various temperatures is performed on the membrane oxides [ 15 ].…”
Section: Introductionmentioning
confidence: 99%