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A chemically inert bismuth interlayer enhances long-term stability of inverted perovskite solar cells S Wu, R Chen, S Zhang, BH Babu, Y Yue, H Zhu, Z Yang, C Chen, ... Nature communications 10 (1), 1161, 2019 | 342 | 2019 |
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Reduction of bulk and surface defects in inverted methylammonium-and bromide-free formamidinium perovskite solar cells R Chen, J Wang, Z Liu, F Ren, S Liu, J Zhou, H Wang, X Meng, Z Zhang, ... Nature Energy 8 (8), 839-849, 2023 | 146 | 2023 |
Solvent engineering for efficient inverted perovskite solar cells based on inorganic CsPbI2Br light absorber S Zhang, S Wu, W Chen, H Zhu, Z Xiong, Z Yang, C Chen, R Chen, L Han, ... Materials today energy 8, 125-133, 2018 | 136 | 2018 |
Barrier designs in perovskite solar cells for long‐term stability S Zhang, Z Liu, W Zhang, Z Jiang, W Chen, R Chen, Y Huang, Z Yang, ... Advanced Energy Materials 10 (35), 2001610, 2020 | 132 | 2020 |
[6,6]-Phenyl-C61-Butyric Acid Methyl Ester/Cerium Oxide Bilayer Structure as Efficient and Stable Electron Transport Layer for Inverted Perovskite Solar Cells R Fang, S Wu, W Chen, Z Liu, S Zhang, R Chen, Y Yue, L Deng, ... ACS nano 12 (3), 2403-2414, 2018 | 130 | 2018 |
Rear electrode materials for perovskite solar cells R Chen, W Zhang, X Guan, H Raza, S Zhang, Y Zhang, PA Troshin, ... Advanced Functional Materials 32 (26), 2200651, 2022 | 90 | 2022 |
Elimination of unstable residual lead iodide near the buried interface for the stability improvement of perovskite solar cells Y Gao, F Ren, D Sun, S Li, G Zheng, J Wang, H Raza, R Chen, H Wang, ... Energy & Environmental Science 16 (5), 2295-2303, 2023 | 86 | 2023 |
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Boost the efficiency of nickel oxide-based formamidinium-cesium perovskite solar cells to 21% by using coumarin 343 dye as defect passivator S Liu, R Chen, X Tian, Z Yang, J Zhou, F Ren, S Zhang, Y Zhang, M Guo, ... Nano Energy 94, 106935, 2022 | 79 | 2022 |
Robust hole transport material with interface anchors enhances the efficiency and stability of inverted formamidinium–cesium perovskite solar cells with a certified efficiency … R Chen, S Liu, X Xu, F Ren, J Zhou, X Tian, Z Yang, X Guanz, Z Liu, ... Energy & Environmental Science 15 (6), 2567-2580, 2022 | 78 | 2022 |
Effective passivation with size‐matched alkyldiammonium iodide for high‐performance inverted perovskite solar cells S Liu, X Guan, W Xiao, R Chen, J Zhou, F Ren, J Wang, W Chen, S Li, ... Advanced Functional Materials 32 (38), 2205009, 2022 | 75 | 2022 |
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Modulation of perovskite degradation with multiple-barrier for light-heat stable perovskite solar cells J Zhou, Z Liu, P Yu, G Tong, R Chen, LK Ono, R Chen, H Wang, F Ren, ... Nature Communications 14 (1), 6120, 2023 | 44 | 2023 |
A general strategy to prepare high-quality inorganic charge-transporting layers for efficient and stable all-layer-inorganic perovskite solar cells S Zhang, W Chen, S Wu, R Chen, Y Huang, Z Yang, J Li, L Han, W Chen Journal of Materials Chemistry A 7 (31), 18603-18611, 2019 | 35 | 2019 |
Strain release of formamidinium-cesium perovskite with imprint-assisted organic ammonium halide compensation for efficient and stable solar cells X Hu, C Zhu, W Zhang, H Wang, J Wang, F Ren, R Chen, S Liu, X Meng, ... Nano Energy 101, 107594, 2022 | 34 | 2022 |
Efficient Methylamine-Containing Antisolvent Strategy to Fabricate High-Efficiency and Stable FA0.85Cs0.15Pb(Br0.15I2.85) Perovskite Solar Cells Y Huang, S Wu, R Chen, S Fang, S Zhang, G Wang, W Chen ACS Applied Materials & Interfaces 11 (20), 18415-18422, 2019 | 34 | 2019 |
A Tailored Nickel Oxide Hole‐Transporting Layer to Improve the Long‐Term Thermal Stability of Inorganic Perovskite Solar Cells W Chen, S Zhang, Z Liu, S Wu, R Chen, M Pan, Z Yang, H Zhu, S Liu, ... Solar RRL 3 (11), 1900346, 2019 | 32 | 2019 |