Strategies of modifying spiro-OMeTAD materials for perovskite solar cells: a review G Ren, W Han, Y Deng, W Wu, Z Li, J Guo, H Bao, C Liu, W Guo Journal of Materials Chemistry A 9 (8), 4589-4625, 2021 | 232 | 2021 |
Recent progress of inverted perovskite solar cells with a modified PEDOT: PSS hole transport layer W Han, G Ren, J Liu, Z Li, H Bao, C Liu, W Guo ACS Applied Materials & Interfaces 12 (44), 49297-49322, 2020 | 134 | 2020 |
Effective stability enhancement in ZnO-based perovskite solar cells by MACl modification C Liu, W Wu, D Zhang, Z Li, G Ren, W Han, W Guo Journal of Materials Chemistry A 9 (20), 12161-12168, 2021 | 41 | 2021 |
Improving the performance of perovskite solar cells by surface passivation W Han, G Ren, Z Li, M Dong, C Liu, W Guo Journal of Energy Chemistry 46, 202-207, 2020 | 36 | 2020 |
Organic iodides in efficient and stable perovskite solar cells: strong surface passivation and interaction G Ren, Z Zhang, Y Deng, Z Li, C Liu, M Wang, W Guo Energy & Environmental Science 16 (2), 565-573, 2023 | 33 | 2023 |
Recent advances of semitransparent organic solar cells S Han, Y Deng, W Han, G Ren, Z Song, C Liu, W Guo Solar Energy 225, 97-107, 2021 | 31 | 2021 |
Incorporating self-assembled silane-crosslinked carbon dots into perovskite solar cells to improve efficiency and stability Z Li, J Guo, Z Li, W Han, G Ren, C Liu, L Shen, W Guo Journal of Materials Chemistry A 8 (11), 5629-5637, 2020 | 30 | 2020 |
Performance improvement of planar perovskite solar cells with cobalt-doped interface layer G Ren, Z Li, W Wu, S Han, C Liu, Z Li, M Dong, W Guo Applied Surface Science 507, 145081, 2020 | 27 | 2020 |
Developing 1D Sb‐embedded carbon nanorods to improve efficiency and stability of inverted planar perovskite solar cells Z Li, C Liu, X Zhang, G Ren, W Han, W Guo Small 15 (1), 1804692, 2019 | 25 | 2019 |
Overcoming perovskite corrosion and de-doping through chemical binding of halogen bonds toward efficient and stable perovskite solar cells G Ren, W Han, Q Zhang, Z Li, Y Deng, C Liu, W Guo Nano-micro letters 14 (1), 175, 2022 | 20 | 2022 |
Recent advances in Pb–Sn mixed perovskite solar cells Y Deng, G Ren, D Han, W Han, Z Li, C Liu, W Guo Journal of Energy Chemistry 73, 615-638, 2022 | 20 | 2022 |
Incorporating a polar molecule to passivate defects for perovskite solar cells C Liu, D Zhang, Z Li, W Han, G Ren, Z Li, L Shen, W Guo, W Zheng Solar RRL 4 (3), 1900489, 2020 | 20 | 2020 |
Low-cost and easily prepared interface layer towards efficient and negligible hysteresis perovskite solar cells W Wu, W Han, Y Deng, G Ren, C Liu, W Guo Journal of colloid and interface science 617, 745-751, 2022 | 13 | 2022 |
Overcoming intrinsic defects of the hole transport layer with optimized carbon nanorods for perovskite solar cells Z Li, J Dong, W Han, G Ren, C Liu, H Cui, L Shen, W Guo Nanoscale 11 (18), 8776-8784, 2019 | 12 | 2019 |
Recent process of plasma effect in organic solar cells M Wang, S Han, W Wu, Z Li, G Ren, C Liu, W Han, L Shen, W Guo Journal of Energy Chemistry 52, 181-190, 2021 | 9 | 2021 |
Alkali metal ions passivation to decrease interface defects of perovskite solar cells G Ren, W Han, Z Li, C Liu, L Shen, W Guo Solar Energy 193, 220-226, 2019 | 9 | 2019 |
Improving light harvesting and charge extraction of polymer solar cells upon buffer layer doping Y Sun, G Ren, S Han, X Zhang, C Liu, Z Li, D Fu, W Guo Solar Energy 202, 80-85, 2020 | 8 | 2020 |
Facilitating electron extraction of inverted polymer solar cells by using organic/inorganic/organic composite buffer layer J Guo, G Ren, W Han, Y Sun, M Wang, Y Zhou, L Shen, W Guo Organic Electronics 68, 187-192, 2019 | 8 | 2019 |
Using 4‐Chlorobenzoic Acid Layer Toward Stable and Low‐Cost CsPbI2Br Perovskite Solar Cells Z Li, W Wu, G Ren, W Han, N Li, C Liu, W Guo Solar RRL 5 (9), 2100347, 2021 | 4 | 2021 |
An easily developed difunctional molecule enabling highly efficient and stable light‐emitting diodes Y Deng, Z Zhang, G Ren, Z Li, C Liu, W Guo Advanced Functional Materials 33 (48), 2305423, 2023 | 3 | 2023 |