188E

曾凯雯

职称:青年研究员

上海市杨浦区淞沪路2005号 复旦大学江湾校区化学-高分子楼

邮箱:zengkw@fudan.edu.cn

教育和工作经历

  • 2011 – 2015 中北大学 理学学士

  • 2015 – 2020 华东理工大学 工学博士

  • 2020 – 2024 复旦大学 博士后

研究领域

  1. 新型金属主链高分子的设计与合成

  2. 新型金属主链高分子的光学、电学性能研究

  3. 新型金属主链高分子在纤维电子器件领域中的应用

主要荣誉与奖励

  • 2020年度获国家自然科学基金青年项目资助

  • 2020年度获上海市“超级博士后”

  • 2020年度获上海市“优秀毕业生”

  • 2019年度获“博士研究生国家奖学金”

代表性论文

  • Zeng, K.; Shi, X.; Tang, C.; Liu, T.; Peng, H., Design, fabrication and assembly considerations for electronic systems made of fibre devices. Nat. Rev. Mater. 2023, 8, 552–561.

  • Zhang, K.#; Shi, X.#; Jiang, H.#; Zeng, K.#; Zhou, Z.; Zhai, P.; Zhang, L.; Peng, H., Design and fabrication of wearable electronic textiles using twisted fiber-based threads. Nature Protocols 2024, 19, 1557–1589.

  • Zeng, K.; Yang, Y.; Xu, J.; Wang, N.; Tang, W.; Xu, J.; Zhang, Y.; Wu, Y.; Xu, Y.; Wang, G.; Chen, P.; Wang, B.; Sun, X.; Jin, G.; Peng, H., Metal-Backboned Polymers with Well-Defined Lengths. Angew. Chem. Int. Ed. 2023, 62 (10), e202216060.

  • Zeng, K.; Chen, Y.; Zhu, W.; Tian, H.; Xie, Y., Efficient Solar Cells based on Concerted Companion Dyes Containing Two Complementary Components: An Alternative Approach for Cosensitization. J. Am. Chem. Soc. 2020, 142 (11), 5154–5161.

  • Wang, N.#; Zeng, K.#; Zheng, Y.; Jiang, H.; Yang, Y.; Zhang, Y.; Li, D.; Yu, S.; Ye, Q.; Peng, H., High-performance thermoelectric fibers from metal-backboned polymers for body-temperature wearable power devices. Angew. Chem. Int. Ed. 2024, e202403415.

  • Zeng, K.; Tong, Z.; Ma, L.; Zhu, W.; Wu, W.; Xie, Y., Molecular engineering strategies for fabricating efficient porphyrin-based dye-sensitized solar cells. Energy Environ. Sci. 2020, 13 (6), 1617–1657.

  • Zeng, K.; Lu, Y.; Tang, W.; Zhao, S.; Liu, Q.; Zhu, W.; Tian, H.; Xie, Y., Efficient Solar Cells Sensitized by a Promising New Type of Porphyrin: Dye-Aggregation Suppressed by Double Strapping. Chem. Sci. 2019, 10 (7), 2186–2192.

  • Zeng, K.; Tang, W.; Li, C.; Chen, Y.; Zhao, S.; Liu, Q.; Xie, Y., Systematic Optimization of the Substituents on the Phenothiazine Donor of Doubly Strapped Porphyrin Sensitizers: An Efficiency over 11% Unassisted by Any Cosensitizer or Coadsorbent. J. Mater. Chem. A 2019, 7 (36), 20854–20860.

  • Zeng, K.; Peng, H., Metal-Backboned Polymer: Conception, Design and Synthesis. Chin. J. Polym. Sci. 2023, 41 (1), 3–6.