Chun-Chao Chen, Ph.D.
Affiliations: | 2015 | Materials Science and Engineering 0328 | University of California, Los Angeles, Los Angeles, CA |
Area:
Energy, Materials Science EngineeringGoogle:
"Chun-Chao Chen"Parents
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Publications
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Zeng R, Zhu L, Zhang M, et al. (2023) All-polymer organic solar cells with nano-to-micron hierarchical morphology and large light receiving angle. Nature Communications. 14: 4148 |
Wu X, Zheng Y, Liang J, et al. (2022) Green-solvent-processed formamidinium-based perovskite solar cells with uniform grain growth and strengthened interfacial contact a nanostructured tin oxide layer. Materials Horizons |
Zhu L, Zhang M, Xu J, et al. (2022) Single-junction organic solar cells with over 19% efficiency enabled by a refined double-fibril network morphology. Nature Materials |
Shan T, Zhang Y, Wang Y, et al. (2020) Universal and versatile morphology engineering via hot fluorous solvent soaking for organic bulk heterojunction. Nature Communications. 11: 5585 |
Shan T, Hong Y, Zhu L, et al. (2019) Achieving Optimal Bulk Heterojunction in All-Polymer Solar Cells by Sequential Processing with Nonorthogonal Solvents. Acs Applied Materials & Interfaces |
Kim J, Hong Z, Li G, et al. (2015) 10.5% efficient polymer and amorphous silicon hybrid tandem photovoltaic cell. Nature Communications. 6: 6391 |
Chen C, Hong Z, Li G, et al. (2015) One-step, low-temperature deposited perovskite solar cell utilizing small molecule additive Journal of Photonics For Energy. 5: 057405 |
Chen C, Bae S, Chang W, et al. (2015) Perovskite/polymer monolithic hybrid tandem solar cells utilizing a low-temperature, full solution process Materials Horizons. 2: 203-211 |
Chang WH, Meng L, Dou L, et al. (2015) A selenophene containing benzodithiophene- alt -thienothiophene polymer for additive-free high performance solar cell Macromolecules. 48: 562-568 |
Chen Q, De Marco N, Yang Y(, et al. (2015) Under the spotlight: The organic–inorganic hybrid halide perovskite for optoelectronic applications Nano Today. 10: 355-396 |