Standout Papers
- Thermodynamically stabilized β-CsPbI 3 –based perovskite solar cells with efficiencies >18% (2019)
- “Solvent Annealing” Effect in Polymer Solar Cells Based on Poly(3‐hexylthiophene) and Methanofullerenes (2007)
- High‐Conductivity Poly(3,4‐ethylenedioxythiophene):Poly(styrene sulfonate) Film and Its Application in Polymer Optoelectronic Devices (2005)
- Efficient and stable Ruddlesden–Popper perovskite solar cell with tailored interlayer molecular interaction (2020)
- Accurate Measurement and Characterization of Organic Solar Cells (2006)
- Solution-processed perovskite light emitting diodes with efficiency exceeding 15% through additive-controlled nanostructure tailoring (2018)
- Smoothing the energy transfer pathway in quasi-2D perovskite films using methanesulfonate leads to highly efficient light-emitting devices (2021)
- Red Perovskite Light‐Emitting Diodes with Efficiency Exceeding 25% Realized by Co‐Spacer Cations (2022)
- Orientated crystallization of FA-based perovskite via hydrogen-bonded polymer network for efficient and stable solar cells (2023)
- One-stone-for-two-birds strategy to attain beyond 25% perovskite solar cells (2023)
- Tautomeric mixture coordination enables efficient lead-free perovskite LEDs (2023)
- Fabrication of red-emitting perovskite LEDs by stabilizing their octahedral structure (2024)
- Enhanced charge carrier transport and defects mitigation of passivation layer for efficient perovskite solar cells (2024)
- Self-assembled bilayer for perovskite solar cells with improved tolerance against thermal stresses (2025)
Immediate Impact
4 by Nobel laureates 11 from Science/Nature 176 standout
Citing Papers
Nonalloyed α-phase formamidinium lead triiodide solar cells through iodine intercalation
2025 StandoutScience
Chiral Induced Spin Selectivity
2024 Standout
Works of Yingguo Yang being referenced
Symmetry-Broken 2D Lead–Tin Mixed Chiral Perovskite for High Asymmetry Factor Circularly Polarized Light Detection
2023
Efficient planar heterojunction perovskite solar cells employing graphene oxide as hole conductor
2014
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Yingguo Yang | 14140 | 8569 | 7358 | 268 | 15.3k | |
| Zhengguo Xiao | 17545 | 11449 | 7931 | 145 | 18.8k | |
| Wanli Ma | 10784 | 7634 | 4292 | 220 | 11.9k | |
| Hsinhan Tsai | 14624 | 11182 | 5441 | 106 | 15.8k | |
| Shujuan Huang | 11203 | 9021 | 3491 | 234 | 12.7k | |
| Wei Zhang | 17617 | 12150 | 7718 | 200 | 20.0k | |
| Wanyi Nie | 15017 | 11399 | 5550 | 118 | 15.9k | |
| Wallace C. H. Choy | 15150 | 9106 | 6898 | 339 | 17.7k | |
| Thomas Riedl | 10315 | 5014 | 4560 | 194 | 12.1k | |
| Yabing Qi | 21638 | 13123 | 8414 | 247 | 22.8k | |
| Zhigang Zang | 9332 | 6879 | 3512 | 179 | 10.8k |
All Works
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