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  1. PbS-Based Quantum Dot Solar Cells with Engineered π-Conjugated Polymers Achieve 13% Efficiency
  2. High‐Efficiency Solution‐Processed Two‐Terminal Hybrid Tandem Solar Cells Using Spectrally Matched Inorganic and Organic Photoactive Materials
  3. Quantum Dot Solar Cells: Molecular Engineering in Hole Transport π‐Conjugated Polymers to Enable High Efficiency Colloidal Quantum Dot Solar Cells (Adv. Energy Mater. 8/2020)
  4. Efficient Hybrid Tandem Solar Cells Based on Optical Reinforcement of Colloidal Quantum Dots with Organic Bulk Heterojunctions
  5. Molecular Engineering in Hole Transport π‐Conjugated Polymers to Enable High Efficiency Colloidal Quantum Dot Solar Cells
  6. Improved Processability and Efficiency of Colloidal Quantum Dot Solar Cells Based on Organic Hole Transport Layers
  7. 11% Organic Photovoltaic Devices Based on PTB7-Th: PC71 BM Photoactive Layers and Irradiation-Assisted ZnO Electron Transport Layers
  8. Solid-state-ligand-exchange free quantum dot ink-based solar cells with an efficiency of 10.9%
  9. Highly efficient air-stable colloidal quantum dot solar cells by improved surface trap passivation
  10. High-Efficiency Photovoltaic Devices using Trap-Controlled Quantum-Dot Ink prepared via Phase-Transfer Exchange
  11. Solution-processed colloidal quantum dot/organic hybrid tandem photovoltaic devices with 8.3% efficiency
  12. Artificial light-harvesting n-type porphyrin for panchromatic organic photovoltaic devices
  13. Low-Temperature-Processed 9% Colloidal Quantum Dot Photovoltaic Devices through Interfacial Management of p-n Heterojunction
  14. PbS/ZnO Heterojunction Colloidal Quantum Dot Photovoltaic Devices by a Room Temperature Air-Spray Method
  15. Simultaneous Improvement of Charge Generation and Extraction in Colloidal Quantum Dot Photovoltaics Through Optical Management
  16. Increasing strength of mold of investment casting
  17. Effects of ultraviolet–ozone treatment on organic-stabilized ZnO nanoparticle-based electron transporting layers in inverted polymer solar cells