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Formamidinium-based planar heterojunction perovskite solar cells with alkali carbonate-doped zinc oxide layer.


ABSTRACT: We herein demonstrate n-i-p-type planar heterojunction perovskite solar cells employing spin-coated ZnO nanoparticles modified with various alkali metal carbonates including Li2CO3, Na2CO3, K2CO3 and Cs2CO3, which can tune the energy band structure of ZnO ETLs. Since these metal carbonates doped on ZnO ETLs lead to deeper conduction bands in the ZnO ETLs, electrons are easily transported from the perovskite active layer to the cathode electrode. The power conversion efficiency of about 27% is improved due to the incorporation of alkali carbonates in ETLs. As alternatives to TiO2 and n-type metal oxides, electron transport materials consisting of doped ZnO nanoparticles are viable ETLs for efficient n-i-p planar heterojunction solar cells, and they can be used on flexible substrates via roll-to-roll processing.

SUBMITTER: Jeong J 

PROVIDER: S-EPMC9082035 | biostudies-literature | 2018 Jul

REPOSITORIES: biostudies-literature

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Formamidinium-based planar heterojunction perovskite solar cells with alkali carbonate-doped zinc oxide layer.

Jeong Jaeki J   Kim Haeyeon H   Yoon Yung Jin YJ   Walker Bright B   Song Seyeong S   Heo Jungwoo J   Park Song Yi SY   Kim Jae Won JW   Kim Gi-Hwan GH   Kim Jin Young JY  

RSC advances 20180703 43


We herein demonstrate n-i-p-type planar heterojunction perovskite solar cells employing spin-coated ZnO nanoparticles modified with various alkali metal carbonates including Li<sub>2</sub>CO<sub>3</sub>, Na<sub>2</sub>CO<sub>3</sub>, K<sub>2</sub>CO<sub>3</sub> and Cs<sub>2</sub>CO<sub>3</sub>, which can tune the energy band structure of ZnO ETLs. Since these metal carbonates doped on ZnO ETLs lead to deeper conduction bands in the ZnO ETLs, electrons are easily transported from the perovskite a  ...[more]

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