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5. Single-layered organic photovoltaics with double cascading charge transport pathways: 18% efficiencies.

6. Unraveling the Crystallization Kinetics of 2D Perovskites with Sandwich-Type Structure for High-Performance Photovoltaics.

10. High‐Efficiency Semitransparent Near‐Infrared Organic Photodetectors Enabled by a Molecular Crystal Network.

23. Multiphase Morphology with Enhanced Carrier Lifetime via Quaternary Strategy Enables High‐Efficiency, Thick‐Film, and Large‐Area Organic Photovoltaics

24. Manipulating Charge Transfer and Transport via Intermediary Electron Acceptor Channels Enables 19.3% Efficiency Organic Photovoltaics

29. A Mixed PC61BM‐COi8DFIC Based Electron Transport Material for Inverted High‐performance Perovskite Solar Cells.

30. The Molecular Ordering and Double‐Channel Carrier Generation of Nonfullerene Photovoltaics within Multi‐Length‐Scale Morphology

31. Slot‐Die‐Coated Organic Solar Cells Optimized through Multistep Crystallization Kinetics

32. Correlating Electronic Structure and Device Physics with Mixing Region Morphology in High‐Efficiency Organic Solar Cells

33. Synergistic effects of bithiophene ammonium salt for high-performance perovskite solar cells

35. High-performance see-through power windows

36. Design Rules of the Mixing Phase and Impacts on Device Performance in High-Efficiency Organic Photovoltaics

38. Mechanism study on organic ternary photovoltaics with 18.3% certified efficiency: from molecule to device

39. Manipulating the Crystalline Morphology in the Nonfullerene Acceptor Mixture to Improve the Carrier Transport and Suppress the Energetic Disorder

44. Organic Solar Cells: High‐Efficiency Organic Photovoltaics using Eutectic Acceptor Fibrils to Achieve Current Amplification (Adv. Mater. 18/2021)

45. Manipulating Crystallization Kinetics of Conjugated Polymers in Nonfullerene Photovoltaic Blends toward Refined Morphologies and Higher Performances

47. High‐Efficiency Organic Photovoltaics using Eutectic Acceptor Fibrils to Achieve Current Amplification

49. Correction: Control of aggregation and dissolution of small molecule hole transport layers via a doping strategy for highly efficient perovskite solar cells

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