2022
DOI: 10.1016/j.physb.2021.413463
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Efficacy of hydrothermally grown ASnO3 (A-Ca, Sr, Ba) transparent conducting oxide thin films

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Cited by 10 publications
(2 citation statements)
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“…Last but not least, PSCs require corrosion‐resistant electrodes with high conductivity and matching energy levels, [131] such as alloying metals (e. g., Au, Ag or Cu), [132–134] TCOs (e. g., ITO, FTO, ATO or AZO) [135–138] and carbon‐based materials (e. g., graphene, carbon nanotubes or conductive polymers) [139–141] …”
Section: Causes Of Redox Reactions and Specific Countermeasuresmentioning
confidence: 99%
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“…Last but not least, PSCs require corrosion‐resistant electrodes with high conductivity and matching energy levels, [131] such as alloying metals (e. g., Au, Ag or Cu), [132–134] TCOs (e. g., ITO, FTO, ATO or AZO) [135–138] and carbon‐based materials (e. g., graphene, carbon nanotubes or conductive polymers) [139–141] …”
Section: Causes Of Redox Reactions and Specific Countermeasuresmentioning
confidence: 99%
“…Last but not least, PSCs require corrosion-resistant electrodes with high conductivity and matching energy levels, [131] such as alloying metals (e. g., Au, Ag or Cu), [132][133][134] TCOs (e. g., ITO, FTO, ATO or AZO) [135][136][137][138] and carbon-based materials (e. g., graphene, carbon nanotubes or conductive polymers). [139][140][141] Furthermore, several common transparent metal oxide electron (e. g., ZnO, TiO 2 , SnO 2 ) and hole (e. g., NiO x , MoO x or CuO x ) transport materials will inevitably produce problematic hydroxyl group-rich oxides.…”
Section: Interface Layermentioning
confidence: 99%