马天舒
发布时间:2026-05-22浏览次数:1248
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1、Synergistic immobilization of ions in mixed tin-lead and all-perovskite tandem solar cells, Nature Communications, 2025, 16(1): 3477
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2、Enhancing Photovoltaically Preferred Orientation in Wide-Bandgap Perovskite for Efficient All- Perovskite Tandem Solar Cells, Advanced Materials, 2025, 37(8): 2412943
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3、Synergistic Dipole-Defect Engineering via Sulfonic Molecular Bridge Boosts Voltage in Wide-Bandgap Perovskite and All- Perovskite Tandem Solar Cells, ACS Nano, 2025, 19(39): 34556-34566
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4、Hole Transport Layer‐ Free Low‐Bandgap Perovskite Solar Cells for Efficient All‐Perovskite Tandems, Advanced Materials, 2023, 36(3): 2308240
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5、Thermodynamic Processes of Perovskite Photovoltaic Devices: Mechanisms, Simulation, and Manipulation, Advanced Functional Materials, 2023, 33(15): 2212596
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6、 Interface parallel dipole regulation in all-perovskite tandem solar cells, Energy & Environmental Science, 2025, 18(18), 8527-8536
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7、Low Band Gap Perovskite Concentrator Solar Cells: Physics, Device Simulation, and Experiment. ACS Applied Materials & Interfaces 2022, 14(26): 29856-29866.
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8、Stable tin–lead perovskite inks for efficient all-perovskite tandems. Nature Energy 2026. DOI: 10.1038/s41560-026-02077-8
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9、 Managing Grain Boundary Energy by Dipole Strategy in Sn-Pb Perovskite for All-Perovskite Tandems. Advanced Materials 2026, 38(20), e72755.
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10、Residual Solvent-Assisted Surface Reconstruction for Efficient Wide-Bandgap Perovskite Solar Cells. Advanced Functional Materials 2026, 36(22): e23248.
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11、 Hydroxyl-functionalized molecular engineering mitigates 2D phase barriers for efficient wide-bandgap and all-perovskite tandem solar cells. Acta Physico-Chimica Sinica 2025, 100128.