2022
DOI: 10.1002/ente.202201251
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Comprehensively Improved the Performance of Carbon‐Based Printed Mesoscopic (FA)CsRbPbI3 Solar Cells by 3‐Pyridine Formamide

Abstract: Excellent stability, low costs, and printability are the most significant features of printable mesoscopic perovskite solar cells (p‐MPSCs). However, the introduction of carbon electrodes reduces the cost of production while causing severe voltage losses within the p‐MPSCs. Herein, formamidine (FA), cesium, and rubidium are selected as A‐site cations (or cationic groups) in perovskite films, and nicotinamide (3‐pyridine formamide, NTM) is introduced as an additive to modify the perovskite films for the prepara… Show more

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Cited by 3 publications
(1 citation statement)
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“…It is evident that the PL intensity increases considerably following 2-n-octyl-1-dodecanol introduction, and the PL peak undergoes a blue shi when introducing 71.2 mL and 142.5 mL 2-n-octyl-1-dodecanol, indicating a decrease in the internal defect state density. 20,21 Specically, the PL peak position undergoes a red-shi following the introduction of 213.8 mL 2-n-octyl-1-dodecanol, demonstrating that an excess of 2-n-octyl-1-dodecanol can affect the crystal structure. 22,23 The gures in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…It is evident that the PL intensity increases considerably following 2-n-octyl-1-dodecanol introduction, and the PL peak undergoes a blue shi when introducing 71.2 mL and 142.5 mL 2-n-octyl-1-dodecanol, indicating a decrease in the internal defect state density. 20,21 Specically, the PL peak position undergoes a red-shi following the introduction of 213.8 mL 2-n-octyl-1-dodecanol, demonstrating that an excess of 2-n-octyl-1-dodecanol can affect the crystal structure. 22,23 The gures in Fig.…”
Section: Resultsmentioning
confidence: 99%