Matches in SemOpenAlex for { <https://semopenalex.org/work/W2147787148> ?p ?o ?g. }
- W2147787148 endingPage "19549" @default.
- W2147787148 startingPage "19542" @default.
- W2147787148 abstract "All-polymer and polymer/fullerene inverted solar cells were fabricated by spin-coating and roll-coating processes. The spin-coated small-area (0.04 cm2) devices were fabricated on indium tin oxide (ITO) coated glass substrates in nitrogen. The roll-coated large-area (1.0 cm2) devices were prepared on ITO-free flexible substrates under ambient conditions. The use of a solvent additive, 1,8-diiodooctane (DIO), facilitated phase separation and enhanced power conversion efficiencies (PCEs). The PCE of polymer/fullerene solar cells increased from 4.58% to 8.12% with 2.5% (v/v) DIO when using the spin-coating process, and increased from 1.37% to 2.09% with 5% (v/v) DIO in the roll-coating process. The PCE of all-polymer solar cells increased from 1.44% to 3.51% with 4% (v/v) DIO when employing the spin-coating process. For the roll-coated large area devices the PCE increased from 0.15% to 0.73% with 9% (v/v) DIO. The optimal amounts of DIO, when using the roll-coating process for the two different active layers (5% and 9% respectively) are significantly higher than those for the spin-coating process (2.5% and 4%, respectively), which is ascribed to a fundamentally different drying mechanism." @default.
- W2147787148 created "2016-06-24" @default.
- W2147787148 creator A5032683783 @default.
- W2147787148 creator A5044756341 @default.
- W2147787148 creator A5047139426 @default.
- W2147787148 creator A5050718596 @default.
- W2147787148 creator A5070377628 @default.
- W2147787148 creator A5085989973 @default.
- W2147787148 creator A5088635289 @default.
- W2147787148 creator A5088702907 @default.
- W2147787148 creator A5089986541 @default.
- W2147787148 creator A5090749815 @default.
- W2147787148 date "2014-10-07" @default.
- W2147787148 modified "2023-10-16" @default.
- W2147787148 title "Comparison of additive amount used in spin-coated and roll-coated organic solar cells" @default.
- W2147787148 cites W1964752741 @default.
- W2147787148 cites W1969111133 @default.
- W2147787148 cites W1969917873 @default.
- W2147787148 cites W1974317471 @default.
- W2147787148 cites W1976940026 @default.
- W2147787148 cites W1981296117 @default.
- W2147787148 cites W1985393172 @default.
- W2147787148 cites W1988567331 @default.
- W2147787148 cites W1990245069 @default.
- W2147787148 cites W1991735721 @default.
- W2147787148 cites W1992878625 @default.
- W2147787148 cites W2000867047 @default.
- W2147787148 cites W2002408580 @default.
- W2147787148 cites W2004079776 @default.
- W2147787148 cites W2004508084 @default.
- W2147787148 cites W2009427291 @default.
- W2147787148 cites W2012832354 @default.
- W2147787148 cites W2018062468 @default.
- W2147787148 cites W2018094686 @default.
- W2147787148 cites W2019125630 @default.
- W2147787148 cites W2021876790 @default.
- W2147787148 cites W2026908288 @default.
- W2147787148 cites W2034002933 @default.
- W2147787148 cites W2034771628 @default.
- W2147787148 cites W2038525620 @default.
- W2147787148 cites W2038602088 @default.
- W2147787148 cites W2040402389 @default.
- W2147787148 cites W2048624292 @default.
- W2147787148 cites W2048813967 @default.
- W2147787148 cites W2050419919 @default.
- W2147787148 cites W2052367030 @default.
- W2147787148 cites W2066542450 @default.
- W2147787148 cites W2068104396 @default.
- W2147787148 cites W2069864730 @default.
- W2147787148 cites W2072869112 @default.
- W2147787148 cites W2075425191 @default.
- W2147787148 cites W2075580333 @default.
- W2147787148 cites W2085123660 @default.
- W2147787148 cites W2086093379 @default.
- W2147787148 cites W2086989114 @default.
- W2147787148 cites W2092118176 @default.
- W2147787148 cites W2094435175 @default.
- W2147787148 cites W2095273068 @default.
- W2147787148 cites W2097795991 @default.
- W2147787148 cites W2100077118 @default.
- W2147787148 cites W2100434911 @default.
- W2147787148 cites W2103514086 @default.
- W2147787148 cites W2105457180 @default.
- W2147787148 cites W2105751718 @default.
- W2147787148 cites W2107131992 @default.
- W2147787148 cites W2112307838 @default.
- W2147787148 cites W2115214920 @default.
- W2147787148 cites W2118686563 @default.
- W2147787148 cites W2121585260 @default.
- W2147787148 cites W2123711607 @default.
- W2147787148 cites W2124790005 @default.
- W2147787148 cites W2127676067 @default.
- W2147787148 cites W2130727233 @default.
- W2147787148 cites W2132012759 @default.
- W2147787148 cites W2149930196 @default.
- W2147787148 cites W2150397710 @default.
- W2147787148 cites W2153028269 @default.
- W2147787148 cites W2154113062 @default.
- W2147787148 cites W2154991169 @default.
- W2147787148 cites W2157082365 @default.
- W2147787148 cites W2165719416 @default.
- W2147787148 cites W2179900211 @default.
- W2147787148 cites W2325901074 @default.
- W2147787148 cites W2328765984 @default.
- W2147787148 cites W4211160986 @default.
- W2147787148 doi "https://doi.org/10.1039/c4ta04906c" @default.
- W2147787148 hasPublicationYear "2014" @default.
- W2147787148 type Work @default.
- W2147787148 sameAs 2147787148 @default.
- W2147787148 citedByCount "34" @default.
- W2147787148 countsByYear W21477871482015 @default.
- W2147787148 countsByYear W21477871482016 @default.
- W2147787148 countsByYear W21477871482017 @default.
- W2147787148 countsByYear W21477871482018 @default.
- W2147787148 countsByYear W21477871482020 @default.
- W2147787148 countsByYear W21477871482021 @default.
- W2147787148 countsByYear W21477871482022 @default.
- W2147787148 countsByYear W21477871482023 @default.