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邓骞
发布日期:2026年05月06日 浏览次数:
邓骞,特聘教授

电子邮箱:qiandeng@kust.edu.cn

办公地址:材料大楼629



研究方向:

(1)热电材料与器件

(2)电-声输运调控

(3)功能涂层材料

教育经历:

(1)2020-09至2025-06,四川大学,核科学与技术,博士

(2)2016-09至2020-06,云南大学,数理基础科学(国家基地班),学士

工作经历:

(1)2025-09至今,昆明理工大学,材料学院,校聘教授

科研项目:

(1)昆明理工大学高层次人才引进,150万元,主持

学术成果:【论文与专利】

目前已在Nat. Commun.、Energy Environ. Sci.、J. Am. Chem. Soc.、Adv. Funct. Mater.、Adv. Sci.、Device、Nano Energy、J. Mater. Sci. Technol.、Chem. Eng. J.、Samll、J. Mater. Chem. A等期刊发表SCI收录论文20余篇,其中2篇为ESI高被引论文。

【近期发表的部分一作论文】

(1)Q. Deng#, X. L. Shi#, M. Li, X. Tan, R. Li, C. Wang, Y. Chen, H. Dong*, R. Ang* and Z. G. Chen*. Lattice defect engineering advances n-type PbSe thermoelectrics. Nat. Commun., 2025, 16, 656.

(2)Q. Deng#, F. J. Zhang#, X. Y. Yang#, R. H. Li, C. L. Xia, P.F. Nan*, Y. Chen, B. H. Ge, R. Ang* and J. Q. He*. Ordered grain boundary reconstruction induces high-efficiency thermoelectric power generation in SnTe. Energy Environ. Sci., 2024, 17, 9467.

(3)Z. L. Zhao#、Q. Deng#、X. B. Tan、F. Feng、J. X. Luo、J. Zheng、H. S. Ma、T. Lu、M. Hong* and R. Ang*.Cooperative nanostructuring and resonant density-of-states engineering enable high-performance n-type PbSe thermoelectrics. J. Am. Chem. Soc., 2026, accepted.

(4)Q. Deng#, F. J. Zhang, P. F. Nan, Z. Y. Zhang, L. Gan, Z. Q. Chen, B. H. Ge, H. L. Dong*, H. K. Mao and R. Ang*. Unique semi-coherent nanostructure advancing thermoelectrics of n-type PbSe. Adv. Funct. Mater., 2023, 34, 2310073.

(5)Q. Deng#, X. B. Tan#, J. S. Wen, R. H. Li, J. X. Luo, Y. Xie, Z. L. Zhao, B. S Sa#, and R. Ang#. Ultra-high thermoelectric performance in ternary n-type PbTe collaboratively enabled by self-optimized carrier concentration and ultra-low lattice thermal conductivity. J. Mater. Sci. Technol., 2025, 236, 86.

(6)Q. Deng#, J. S. Wen#, X. An, Y. Xie, J. X. Luo, Z. L. Zhao, B. S Sa, H. L. Dong* and R. Ang*. Thermoelectric cooling and low-temperature power generation in n-type PbTe enabled by band flattening and entropy engineering. Chem. Eng. J., 2025, 506, 160319.

(7)Q. Deng#, X. B. Tan, R. H. Li, Y. Xie, Z. L. Zhao, J. X. Luo, and R. Ang*. Synergistic engineering of atomic disorder and porous architectures for ultralow lattice thermal conductivity and enhanced thermoelectric performance in n-type high-entropy lead chalcogenides. J. Mater. Chem. A, 2025,13, 15691.

(8)X. B. Tan#, Q. Deng#, J. L. Zhu, R. H. Li, X. Rao, F. Feng, S. Lyu, P. F. Nan,Y. Chen, B. H. Ge and R. Ang*. Enhanced band-crystal engineering drives superior power generation in GeTe. Adv. Sci. 2025, 12, e06612.

奖励与荣誉:

(1)中国核工业教育学会第二届优秀学位论文一等奖

(2)四川大学优秀博士学位论文

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