2016
DOI: 10.1016/j.matlet.2016.03.127
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Highly flexible, conductive and transparent PEDOT:PSS/Au/PEDOT:PSS multilayer electrode for optoelectronic devices

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Cited by 34 publications
(15 citation statements)
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“…(PEDOT : PSS [29] [41,42] . Lee 等 人 [41] 在 PET衬底上制备了ZnO/Ag/ZnO/Ag/WO 3 结构透明电 极, 通过在两层Ag之间引入ZnO夹层, 使该多层膜 具有极低的表面电阻(1.6 Ω/sq), 优化各膜层厚度所 得的样品具有高且宽的透过率谱峰(平均光透过率为 75%).…”
Section: Tcf的表面电阻(r S )和光透过率(T)是衡量其光unclassified
“…(PEDOT : PSS [29] [41,42] . Lee 等 人 [41] 在 PET衬底上制备了ZnO/Ag/ZnO/Ag/WO 3 结构透明电 极, 通过在两层Ag之间引入ZnO夹层, 使该多层膜 具有极低的表面电阻(1.6 Ω/sq), 优化各膜层厚度所 得的样品具有高且宽的透过率谱峰(平均光透过率为 75%).…”
Section: Tcf的表面电阻(r S )和光透过率(T)是衡量其光unclassified
“…Therefore, there is intensive ongoing research to develop alternatives for indium and ITO. Few potential substitutes for indium are found in some applications-e.g., PEDOT [Poly(3,4,-ethylene dioxythiophene)] in flexible displays [30] and touch screens [31], as well as gallium in photovoltaic cells [32,33]. Moreover, antimony tin oxide (ATO) coatings have been developed and successfully fabricated for applying to flexible electronics [34,35].…”
Section: Unique Technical Properties Of Indiummentioning
confidence: 99%
“…Attractive alternatives to conventional TCOs are represented by metallic nanostructures in the form of ultrathin films (Stec et al, 2011;Zhang et al, 2017;Pereira et al, 2018) or multilayered structural configurations, such as dielectric/metal/dielectric (D/M/D), organic/metal/organic and polymer/metal/polymer architectures (Cattin et al, 2013;Della Gaspera et al, 2015;Guo et al, 2015;Aleksandrova et al, 2016;Kao et al, 2018;Liang et al, 2018). D/M/D are excellent candidates as transparent conductors (Bi et al, 2019): in general stacks based on Ag ultrathin films show the best optoelectrical properties (T = 80-90%, R s = 10-20 /sq) (Guo et al, 2012;Wang et al, 2014;Behrendt et al, 2015), but multilayers based on Au should be preferred for application in PSCs, due to their higher stability.…”
Section: Introductionmentioning
confidence: 99%