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Surface reaction for efficient and stable inverted perovskite solar cells Q Jiang, J Tong, Y Xian, RA Kerner, SP Dunfield, C Xiao, RA Scheidt, ... Nature 611 (7935), 278-283, 2022 | 762 | 2022 |
Efficient, stable silicon tandem cells enabled by anion-engineered wide-bandgap perovskites D Kim, HJ Jung, IJ Park, BW Larson, SP Dunfield, C Xiao, J Kim, J Tong, ... Science 368 (6487), 155-160, 2020 | 543 | 2020 |
Enabling flexible all-perovskite tandem solar cells AF Palmstrom, GE Eperon, T Leijtens, R Prasanna, SN Habisreutinger, ... Joule 3 (9), 2193-2204, 2019 | 445 | 2019 |
From defects to degradation: a mechanistic understanding of degradation in perovskite solar cell devices and modules SP Dunfield, L Bliss, F Zhang, JM Luther, K Zhu, MFAM van Hest, ... Advanced Energy Materials 10 (26), 1904054, 2020 | 384 | 2020 |
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Design of low bandgap tin–lead halide perovskite solar cells to achieve thermal, atmospheric and operational stability R Prasanna, T Leijtens, SP Dunfield, JA Raiford, EJ Wolf, SA Swifter, ... Nature Energy 4 (11), 939-947, 2019 | 311 | 2019 |
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Enhancing charge transport of 2D perovskite passivation agent for wide‐bandgap perovskite solar cells beyond 21% JY Ye, J Tong, J Hu, C Xiao, H Lu, SP Dunfield, DH Kim, X Chen, ... Solar Rrl 4 (6), 2000082, 2020 | 107 | 2020 |
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The molybdenum oxide interface limits the high-temperature operational stability of unencapsulated perovskite solar cells TH Schloemer, JA Raiford, TS Gehan, T Moot, S Nanayakkara, SP Harvey, ... ACS Energy Letters 5 (7), 2349-2360, 2020 | 58 | 2020 |
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Beyond Strain: Controlling the Surface Chemistry of CsPbI3 Nanocrystal Films for Improved Stability against Ambient Reactive Oxygen Species T Moot, DR Dikova, A Hazarika, TH Schloemer, SN Habisreutinger, ... Chemistry of Materials 32 (18), 7850-7860, 2020 | 34 | 2020 |
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