Matches in SemOpenAlex for { <https://semopenalex.org/work/W3036611410> ?p ?o ?g. }
- W3036611410 endingPage "055016" @default.
- W3036611410 startingPage "055016" @default.
- W3036611410 abstract "To achieve fully-solution processed n-i-p perovskite solar cells (PSCs), jet-sprayed silver nanowires (AgNWs) are used to replace vacuum-deposited Ag film as the top electrode of n-i-p structure PSCs. AgNWs are covered with a layer of polyvinylpyrrolidone (PVP) because of the addition of PVP during the growth process of AgNWs. This PVP will deteriorate the conductivity of AgNWs and become a charge extraction barrier as an electrode of a PSC. A low temperature (<40 °C) atmospheric-pressure dielectric-barrier-discharge-jet (DBDjet) is used to post-treat AgNWs after completing the fabrication of n-i-p PSCs. The average cell efficiency improved from 9.069% (without DBDjet treatment) to 12.09% (DBDjet with scan rate of 0.5 cm s −1 ), and the best performing cell achieves efficiency of 14.037% (DBDjet with scan rate of 1 cm s −1 ). DBDjet plasma treatment removes PVP, improving the interfacial contacts among AgNWs and between AgNWs layer and hole transport layer; this in turn increases the cell efficiency. Sheet resistance measurement, X-ray photoelectron spectroscopy, water contact angle measurement, and electrochemical impedance spectroscopy all show evidence of the removal of the PVP layer by DBDjet plasma treatment." @default.
- W3036611410 created "2020-06-25" @default.
- W3036611410 creator A5024767137 @default.
- W3036611410 creator A5030232330 @default.
- W3036611410 creator A5030769147 @default.
- W3036611410 creator A5033008222 @default.
- W3036611410 creator A5037535777 @default.
- W3036611410 creator A5081165207 @default.
- W3036611410 date "2020-01-06" @default.
- W3036611410 modified "2023-10-18" @default.
- W3036611410 title "Low Temperature (<40 °C) Atmospheric-Pressure Dielectric-Barrier-Discharge-jet (DBDjet) Plasma Treatment on Jet-Sprayed Silver Nanowires (AgNWs) Electrodes for Fully Solution-Processed n-i-p Structure Perovskite Solar Cells" @default.
- W3036611410 cites W1781809422 @default.
- W3036611410 cites W1849148947 @default.
- W3036611410 cites W1962502415 @default.
- W3036611410 cites W1969321027 @default.
- W3036611410 cites W1991981401 @default.
- W3036611410 cites W2006009713 @default.
- W3036611410 cites W2027361466 @default.
- W3036611410 cites W2041953040 @default.
- W3036611410 cites W2043905822 @default.
- W3036611410 cites W2044301568 @default.
- W3036611410 cites W2045632780 @default.
- W3036611410 cites W2046059764 @default.
- W3036611410 cites W2048098095 @default.
- W3036611410 cites W2051398560 @default.
- W3036611410 cites W2051412748 @default.
- W3036611410 cites W2055473793 @default.
- W3036611410 cites W2061903828 @default.
- W3036611410 cites W2063384777 @default.
- W3036611410 cites W2071953864 @default.
- W3036611410 cites W2073906168 @default.
- W3036611410 cites W2083545817 @default.
- W3036611410 cites W2088513400 @default.
- W3036611410 cites W2119335109 @default.
- W3036611410 cites W2128643422 @default.
- W3036611410 cites W2137901878 @default.
- W3036611410 cites W2146283557 @default.
- W3036611410 cites W2146579158 @default.
- W3036611410 cites W2170182460 @default.
- W3036611410 cites W2172594772 @default.
- W3036611410 cites W2206784480 @default.
- W3036611410 cites W2218385930 @default.
- W3036611410 cites W2246117843 @default.
- W3036611410 cites W2254160209 @default.
- W3036611410 cites W2273233390 @default.
- W3036611410 cites W2294768644 @default.
- W3036611410 cites W2490861245 @default.
- W3036611410 cites W2509161035 @default.
- W3036611410 cites W2550668923 @default.
- W3036611410 cites W2593267412 @default.
- W3036611410 cites W2611603156 @default.
- W3036611410 cites W2753605999 @default.
- W3036611410 cites W2755056791 @default.
- W3036611410 cites W2768937198 @default.
- W3036611410 cites W2770274404 @default.
- W3036611410 cites W2780624927 @default.
- W3036611410 cites W2807726714 @default.
- W3036611410 cites W2894346082 @default.
- W3036611410 cites W2895183730 @default.
- W3036611410 cites W2903613176 @default.
- W3036611410 cites W2965083360 @default.
- W3036611410 cites W3011885133 @default.
- W3036611410 cites W642417197 @default.
- W3036611410 doi "https://doi.org/10.1149/2162-8777/ab9dde" @default.
- W3036611410 hasPublicationYear "2020" @default.
- W3036611410 type Work @default.
- W3036611410 sameAs 3036611410 @default.
- W3036611410 citedByCount "6" @default.
- W3036611410 countsByYear W30366114102021 @default.
- W3036611410 countsByYear W30366114102022 @default.
- W3036611410 countsByYear W30366114102023 @default.
- W3036611410 crossrefType "journal-article" @default.
- W3036611410 hasAuthorship W3036611410A5024767137 @default.
- W3036611410 hasAuthorship W3036611410A5030232330 @default.
- W3036611410 hasAuthorship W3036611410A5030769147 @default.
- W3036611410 hasAuthorship W3036611410A5033008222 @default.
- W3036611410 hasAuthorship W3036611410A5037535777 @default.
- W3036611410 hasAuthorship W3036611410A5081165207 @default.
- W3036611410 hasBestOaLocation W30366114101 @default.
- W3036611410 hasConcept C111368507 @default.
- W3036611410 hasConcept C113196181 @default.
- W3036611410 hasConcept C119947313 @default.
- W3036611410 hasConcept C121332964 @default.
- W3036611410 hasConcept C127313418 @default.
- W3036611410 hasConcept C127413603 @default.
- W3036611410 hasConcept C133386390 @default.
- W3036611410 hasConcept C147789679 @default.
- W3036611410 hasConcept C171250308 @default.
- W3036611410 hasConcept C17525397 @default.
- W3036611410 hasConcept C175708663 @default.
- W3036611410 hasConcept C185592680 @default.
- W3036611410 hasConcept C188027245 @default.
- W3036611410 hasConcept C192562407 @default.
- W3036611410 hasConcept C200239111 @default.
- W3036611410 hasConcept C2779227376 @default.
- W3036611410 hasConcept C2780077769 @default.
- W3036611410 hasConcept C2780824857 @default.
- W3036611410 hasConcept C42360764 @default.