Tengling Ye, Dr
Affiliations: | Center for Nanoscience and Technology | Italian Institute of Technology, Genoa, United States |
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Publications
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Shen C, Ye T, Yang P, et al. (2024) All-Inorganic Perovskite Solar Cells: Defect Regulation and Emerging Applications in Extreme Environments. Advanced Materials (Deerfield Beach, Fla.). e2401498 |
Ye T, Chen W, Jin S, et al. (2019) Enhanced efficiency of planar heterojunction perovskite solar cells by a light soaking treatment on BCF-doped PTAA solution. Acs Applied Materials & Interfaces |
Ye T, Jin S, Kang C, et al. (2018) Comparison Study of Wide Bandgap Polymer (PBDB-T) and Narrow Bandgap Polymer (PBDTTT-EFT) as Donor for Perylene Diimide Based Polymer Solar Cells. Frontiers in Chemistry. 6: 613 |
Ye T, Wang J, Chen W, et al. (2017) Improved performance and reproducibility of perovskite solar cells by well-soluble tris(pentafluorophenyl)borane as a p-type dopant. Acs Applied Materials & Interfaces |
Dong G, Ye T, Yang Y, et al. (2017) SiW12-TiO2 mesoporous layer in favor of enhancing electron extraction efficiency and conductivity in perovskite solar cells. Chemsuschem |
Dong G, Xia D, Yang Y, et al. (2017) Keggin-type PMo11V as a P-type Dopant for Enhancing the Efficiency and Reproducibility of Perovskite Solar Cells. Acs Applied Materials & Interfaces |
Xu W, Xia R, Ye T, et al. (2016) Understanding the Light Soaking Effects in Inverted Organic Solar Cells Functionalized with Conjugated Macroelectrolyte Electron-Collecting Interlayers. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). 3: 1500245 |
Aluicio-Sarduy E, Singh R, Kan Z, et al. (2015) Elucidating the impact of molecular packing and device architecture on the performance of nanostructured perylene diimide solar cells. Acs Applied Materials & Interfaces. 7: 8687-98 |
Xu W, Kan Z, Ye T, et al. (2015) Correction to well-defined star-shaped conjugated macroelectrolytes as efficient electron-collecting interlayer for inverted polymer solar cells. Acs Applied Materials & Interfaces. 7: 5038 |
Jiang Y, Yang Y, Qiang L, et al. (2015) A detailed study on the working mechanism of a heteropoly acid modified TiO2 photoanode for efficient dye-sensitized solar cells. Physical Chemistry Chemical Physics : Pccp. 17: 6778-85 |