2001
DOI: 10.1016/s0040-6090(01)01047-1
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Transparent conducting, anti-static and anti-static–anti-glare coatings on plastic substrates

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Cited by 105 publications
(48 citation statements)
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“…20,[29][30][31] High porosity is one of the reasons why nanoparticulate coatings are not yet competitive with their sputtered counterparts, at least with regard to the electrical performance, as conductivity strongly depends on the interparticle contact. As we have shown in previous studies, [21][22][23] filling up the pores with additives causes a significant improvement of electrical, optical, and/or mechanical film properties due to improved network formation.…”
Section: Resultsmentioning
confidence: 99%
“…20,[29][30][31] High porosity is one of the reasons why nanoparticulate coatings are not yet competitive with their sputtered counterparts, at least with regard to the electrical performance, as conductivity strongly depends on the interparticle contact. As we have shown in previous studies, [21][22][23] filling up the pores with additives causes a significant improvement of electrical, optical, and/or mechanical film properties due to improved network formation.…”
Section: Resultsmentioning
confidence: 99%
“…durch Einbau transparenter leitfähiger Oxide eine antistatische Wirkung erzielt werden (Abschnitt 4.2). [244] Selbst wenn Lacke und Polymere zu den am weitesten fortgeschrittenen Einsatzbereichen der NP-Komposite gehö-ren, ist die NP-basierte Eigenschaftsverbesserung keineswegs hierauf beschränkt. Auch im Motorenbau, wo im Sinne der Gewichtsreduktion mehr und mehr Bauteile aus AluminiumSilicium-Legierungen Verwendung finden, sucht man nach Wegen zu härteren und zugleich korrosionsbeständigeren Oberflächen.…”
Section: Veredlung Von Werkstoffoberflächenunclassified
“…The main reason behind this interest lies in their interesting dielectric properties, leading to several potential applications as transparent conducting oxides (TCOs), which are employed in the fabrication of transparent electrodes for photovoltaic cell and organic light-emitting diodes [4][5][6][7][8]. Besides, they can be used as electronic/chemical devices such as chemical sensors [9], stable capacitors [10], water photoelectrolysis systems [11,12], flat panel displays [13], antistatic coating [14], lithium batteries and humidity sensor [15]. The perovskite structures of these compounds are either cubic (BaSnO 3 ) or orthorhombic (CaSnO 3 and SrSnO 3 ).…”
Section: Introductionmentioning
confidence: 99%