朱磊助理研究员

电子邮件:leizhu@sjtu.edu.cn

  • 教育背景

    2012.09 – 2018.01,北京化工大学,博士
    2007.09 – 2011.07,北京化工大学,学士

  • 工作经历

    2023.10-至今,上海交通大学化学化工学院,助理研究员

    2020.05-2023.07,上海交通大学化学化工学院,博士后

    2018.05-2020.04,华南协同创新研究院,博士后

  • 培训、出访及挂职经历

    2017.09-2018.03,劳伦斯伯克利国家实验室,访问学生

  • 研究方向

    有机薄膜光伏器件

  • 科研项目

    1、2024-2027,国家自然科学基金面上项目,主持

    2、2022-2023,中国博士后科学基金第15批特别资助(站中),主持

    3、2020-2022,中国博士后科学基金第68批面上资助,主持

    4、2020-2022,国家自然科学基金青年科学基金项目,主持

    5、2019-2020,中国博士后科学基金第66批面上资助,主持

    6、2020-2023,国家重点研发计划,参与


  • 代表性论文专著

    1.  Zeng, R.#; Zhu, L.#; Zhang, M.; Zhong, W.; Zhou, G.; Zhuang, J.; Hao, T.; Zhou, Z.; Zhou, L.; Hartmann, N.; Xue, X.; Jing, H.; Han, F.; Bai, Y.; Wu, H.; Tang, Z.; Zou, Y.; Zhu, H.; Chen, C.-C.; Zhang, Y.; Liu, F.*, All-polymer organic solar cells with nano-to-micron hierarchical morphology and large light receiving angle. Nature Communications 2023, 14, 4148.

    2.  Zhu, L.#; Zhang, M.#; Xu, J.#; Li, C.; Yan, J.*; Zhou, G.; Zhong, W.; Hao, T.; Song, J.; Xue, X.;  Zhou, Z.; Zeng, R.; Zhu, H.; Chen, C.-C.; MacKenzie, R. C. I.; Zou, Y.; Nelson, J.; Zhang, Y.; Sun, Y.*; Liu, F.*, Single-junction organic solar cells with over 19% efficiency enabled by a refined double-fibril network morphology. Nature Materials 2022, 21(6), 656-663.Featured,封面文章,ESI热点论文) 

    3.  Pei, S.*; Xiong, X.; Zhong, W.*; Xue, X.; Zhang, M.; Hao, T.; Zhang, Y.; Liu, F.; Zhu, L.*, Highly Efficient Organic Solar Cells Enabled by the Incorporation of a Sulfonated Graphene Doped PEDOT:PSS Interlayer. ACS Applied Materials & Interfaces 2022, 14(30), 34814-34821.

    4.  Zhu, L.; Zhang, Q. Z.; Ding, H.; Zhang, M.; Xue, X. N.; Zhong, W. K.; Zhou, Z. C.; Xu, J. Q.; Feng, W.; Zou, Y. C.; Zhang, Y. M.; Liu, F.*, Unraveling the effect of solvent additive and fullerene component on morphological control in organic solar cells. Chinese Journal of Polymer Science 2022, 40, 1604-1612.

    5.  Zhu, L.#; Zhang, M.#; Zhong, W.; Leng, S.; Zhou, G.; Zou, Y.; Su, X.; Ding, H.; Gu, P.*; Liu, F.*; Zhang, Y.*, Progress and prospects of the morphology of non-fullerene acceptor based high-efficiency organic solar cells. Energy & Environmental Science 2021, 14(8), 4341-4357.ESI高被引论文)

    6.  Zhang, M.#; Zhu, L.#; Zhou, G.#; Hao, T.; Qiu, C.; Zhao, Z.; Hu, Q.; Larson, B. W.; Zhu, H.; Ma, Z.; Tang, Z.; Feng, W.; Zhang, Y.; Russell, T. P.; Liu, F.*, Single-layered organic photovoltaics with double cascading charge transport pathways: 18% efficiencies. Nature Communications 2021, 12(1), 309.2021年中国百篇最具影响学术论文,ESI高被引论文,ESI热点论文)

    7.  Zhang, M.#; Zhu, L.#; Hao, T.#; Zhou, G.; Qiu, C.; Zhao, Z.; Hartmann, N.; Xiao, B.; Zou, Y.; Feng, W.; Zhu, H.; Zhang, M.; Zhang, Y.; Li, Y.; Russell, T. P.; Liu, F.*, High-Efficiency Organic Photovoltaics using Eutectic Acceptor Fibrils to Achieve Current Amplification. Advanced Materials 2021, 33(18), 2007177.ESI高被引论文,Back Cover

    8.  Song, J.#; Zhu, L.#; Li, C.; Xu, J.; Wu, H.; Zhang, X.; Zhang, Y.; Tang, Z.*; Liu, F.; Sun, Y.*, High-efficiency organic solar cells with low voltage loss induced by solvent additive strategy. Matter 2021, 4(7), 2542-2552. ESI高被引论文)

    9.  Xiong, X.; Xue, X.; Zhang, M.; Hao, T.; Han, Z.; Sun, Y.; Zhang, Y.; Liu, F.; Pei, S.*; Zhu, L.*, Melamine-Doped Cathode Interlayer Enables High-Efficiency Organic Solar Cells. ACS Energy Letters 2021, 6(10), 3582-3589.

    10.  Zhu, L.#; Zhang, M.#; Zhou, G.; Hao, T.; Xu, J.; Wang, J.; Qiu, C.; Prine, N.; Ali, J.; Feng, W.; Gu, X.; Ma, Z.; Tang, Z.; Zhu, H.; Ying, L.; Zhang, Y.; Liu, F.*, Efficient Organic Solar Cell with 16.88% Efficiency Enabled by Refined Acceptor Crystallization and Morphology with Improved Charge Transfer and Transport Properties. Advanced Energy Materials 2020, 10(18), 1904234.2020年中国百篇最具影响学术论文,ESI热点论文,Adv. Energy Mater. 2020-2021年度最高引用论文“Top Cited Article 2020-2021”,2020-2021年度材料领域最具影响力论文,Back Cover

    11.  Zhu, L.; Zhong, W.; Qiu, C.; Lyu, B.; Zhou, Z.; Zhang, M.; Song, J.; Xu, J.; Wang, J.; Ali, J.; Feng, W.; Shi, Z.; Gu, X.; Ying, L.; Zhang, Y.; Liu, F.*, Aggregation-Induced Multilength Scaled Morphology Enabling 11.76% Efficiency in All-Polymer Solar Cells Using Printing Fabrication. Advanced Materials 2019, 31(41), 1902899.ESI高被引论文)

  • 荣誉奖励

    2023年 科睿唯安全球高被引科学家(cross-field)

    2020年 获上海市超级博士后资助

地址:上海市东川路800号 200240
电话:021-54742893
E-mail:sjtuscce@sjtu.edu.cn

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