- [1] Wu, Jingnan. Over 18% Efficiency from Halogen-Free Solvent-Processed Polymer Solar Cells Enabled by Asymmetric Small Molecule Acceptors with Fluoro-Thienyl Extended Terminal. Advanced functional materials, 2025.
- [2] . Achieving Uniform Phase Structure for Layer-by-layer Processed Binary Organic Solar Cells with 20.2% Efficiency. Angewandte Chemie International Edition, 2025.
- [3] Wu, Jingnan. Balance Processing and Molecular Packing via Structural Disordering in a Random Terpolymer for Over 19% Efficiency Non-Halogenated Solvent Organic Solar Cells. advanced energy materials, 2025.
- [4] 程博. Precise Control Over Crystallization Kinetics by Combining Nucleating Agents and Plasticizers for 20.1% Efficiency Organic Solar Cells. ADVANCED MATERIALS, 2025.
- [5] 韩晨雨. Vinyl‐Functionalized Linear Alkyl Chains in Nonfullerene Acceptors Enable 19.2% Efficiency and Stable As‐Cast Organic Solar Cells. Angew Chem Ind Ed, 2025.
- [6] Bai, Hairui. Non-Fully Conjugated Photovoltaic Materials with Y-Series Acceptor Backbone for High-Performance Organic Solar Cells?. Chinese Journal of Chemistry, 2024.
- [7] . A Halogen-free and Universally Volatile Solid Additive Enables Binary Organic Solar Cells to Exceed 19% Efficiency. Advanced Functional Materials, 2024.
- [8] Kun Wang. Enhanced Fill Factor and Efficiency of Ternary Organic Solar Cells by a New Asymmetric Non-Fullerene Small Molecule Acceptor. ChemSusChem, 2024.
- [9] 程博. Manipulating crystallization kinetics and vertical phase distribution via a small molecule donor guest for organic photovoltaic cells with 20% efficiency. 能源环境科学, 2024.
- [10] 肖海芹. An efficient polymer acceptor with fluorinated linkers enables all polymer solar cells with an efficiency of 15.7%. Journal of Materials Chemistry A, 5584, 2023.
- [11] Bing Guo. Fine-Tuned Active Layer Morphology for Bulk Heterojunction Organic Solar Cells with Indene-C60 Bisadduct as a Third Component. ACS Applied Materials & Interfaces, 15, 58693-58699, 2023.
- [12] . Enhancing intermolecular packing and light harvesting through asymmetric non-fullerene acceptors for achieving 18.7% efficiency ternary organic solar cells. Journal of Materials Chemistry A, 11, 15553-15560, 2023.
- [13] Shi Yu. All-small-molecule Organic Solar Cells with Enhanced Efficiency and Stability Enabled by Polymer Additive as a Morphology Modulator. 高 等 学 校 化 学 学 报, 44, 2023.
- [14] Zhang, Liu. A Non-Halogenated Polymer Donor Based on Imide Unit for Organic Solar Cells with Efficiency Nearly 16%. Chinese Journal of Chemistry, 41, 2095-2102, 2023.
- [15] Xiao, Haiqin. An asymmetric non-fused electron-deficient building block for low-cost polymer acceptor in all-polymer solar cells. Science China-Chemistry, 66, 2626-2633, 2023.
- [16] Wu, Jingnan. Modulating the nanoscale morphology on carboxylate-pyrazine containing terpolymer toward 17.8% efficiency organic solar cells with enhanced thermal stability. Chemical Engineering Journal, 446, 2022.
- [17] . Morphology optimization induced by a highly volatile solid additive contributes to efficient organic solar cells with enhanced photostability. Organic electronics, 125, 2024.
- [18] Qian, Deping. Correlating the Hybridization of Local-Exciton and Charge-Transfer States with Charge Generation in Organic Solar Cells. advanced energy materials, 13, 2023.
- [19] Xiao, Haiqin. An efficient polymer acceptor with fluorinated linkers enables all polymer solar cells with an efficiency of 15.7%. Journal of Materials Chemistry A, 11, 5584, 2023.
- [20] Zhang, Zhiliang. Enhancing intermolecular packing and light harvesting through asymmetric non-fullerene acceptors for achieving 18.7% efficiency ternary organic solar cells. Journal of Materials Chemistry A, 11, 15553, 2023.