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个人简介

教育背景 2017-2022 韩国浦项科技大学化学工程系 博士 2010-2017 青岛大学物理系 学士/硕士 工作经历 2024-至今 电子科技大学基础与前沿科学研究院 教授 2023-2024 美国西北大学化学系 博士后 2022-2023 韩国浦项科技大学化学工程系 博士后

研究领域

电子信息材料、半导体器件、逻辑电路集成中红外探测

近期论文

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Liu A.,Zhu H.,* Bai S., Reo Y., Caironi M., Petrozza A., Dou L.T., Noh Y.Y.,* High-performance metal halide perovskite transistors.Nat. Electron.6, 559 (2023). Liu A., Zhu H., Bai S., Reo Y., Zou T., Kim M.G.,* Noh Y.Y.,* High-performance inorganic metal halide perovskite transistors.Nat. Electron.5, 78 (2022). Zhu H.H., Yang W., Reo Y., Zheng G., Bai S.,Liu A.,* Noh Y.Y.*, Tin perovskite transistors and complementary circuits based on A-site cation engineering.Nat. Electron.6, 78 (2023). Liu A., Zhu H.H., Reo Y., Zou T., Noh Y.Y.,* Evaporated nanometre chalcogenide films for scalable high-performance complementary electronics.Nat. Commun.13, 6372 (2022). Liu A., Zhu H.H., Park W.T., Kim S.J., Kim H., Kim M.G.,* Noh Y.Y.,* High-performance p-channel transistors with transparent Zn doped-CuI.Nat. Commun.11, 4309 (2020). Liu A., Zhu H.H., Noh Y.Y.,* Solution-processed inorganic p-channel transistors: recent advances and perspectives.Mat. Sci. Eng. R135, 85 (2019). Liu A., Zhu H.H., Park W.T., Kang S.J., Xu Y.,* Kim M.G.,* Noh Y.Y.,* Room-temperature solution-synthesized p-type copper(I) iodide semiconductors for transparent thin-film transistors and complementary electronics.Adv. Mater.30, 1802379 (2018). Liu A., Zhu H.H., Sun H., Xu Y.,* Noh Y.Y.,* Solution processed metal oxide high-κ dielectrics for emerging transistors and circuits.Adv. Mater.30, 1706364 (2018). Liu A., Zhu H.H., Guo Z., Meng Y., Liu G.X., Fortunato E., Martins R., Shan F.K.,* Solution combustion synthesis: low-temperature processing for p-type Cu:NiO thin films for transparent electronics.Adv. Mater.29, 1701599 (2017). Roh T., Zhu H., Yang W.,Liu A.*, and Noh Y.-Y.*, Ion migration induced unusual charge transport in tin halide perovskites.ACS Energy Letters8, 957 (2023). Reo Y., Choi T., Go J.Y., Jeon S., Lim B., Zhu H.,Liu A.*, and Noh Y.-Y.*, Precursor solution aging: a universal strategy modulating crystallization of two-dimensional tin halide perovskite films.ACS Energy Letters8, 3088 (2023).

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