祁小四

发布者:物理学院发布时间:2023-08-24浏览次数:4334

姓名:祁小四

职称:教授

办公室:博学楼317

电话:

电子邮件:xsqi@gzu.edu.cn

研究领域:电磁功能材料、能量储存和转化及新能源

招生方向:凝聚态物理

【个人简介】

祁小四,物理学博士,物理化学博士后,现为贵州大学物理学院博士生导师,三级教授。主要从事电磁功能材料、能量储存和转化及新能源研究领域。贵州省物理学会副秘书长,第六届中国青年科技工作者协会基础科学专业委员会委员,教育部高等学校大学物理课程教学指导委员会理工学科分委员会委员,磁性材料及器件, International Journal of Minerals, Metallurgy and Materials, Advanced Composites and Hybrid Materials等杂志青年编委。

 

学术经历

12011-07-012016-06-10 贵州大学理学院副教授

22014-09-012016-07-01 南京大学化学与化工学院博士后

32016-06-302017-07-01 中国科学院沈阳金属所先进炭材料研究部访问学者

42016-06-11       贵州大学物理学院教授

 

学术成就

先后荣获教育部博士研究生学术新人奖(2010)、贵州省第五届自然科学优秀学术论文一等奖(2013)、贵州大学卓越基金一等奖(2013)、江苏省自然科学二等奖(2015) 、贵州省省属高校系统优秀党员(2016)、贵州省千层次创新型人才(2016)、贵州省优秀青年科技人才(2017)、中组部西部之光学者(2017)、贵州省优秀科技工作者(2018)、贵州省优秀硕士生导师(2018)、贵州大学国华奖获得者(2019)、贵州省青年科技奖(2019)、贵州省自然科学二等奖(2019)、贵州省教学成果奖二等奖(2019)、教育部霍英东青年教师项目获得者(2021)、贵州省II省管专家(2023)、贵州省百层次创新型人才(2023)Nano Research 顶级论文奖(2023)、贵州省自然科学一等奖(2023)、两篇论文入选Nano Research顶级论文奖(2023)International Journal of Minerals, Metallurgy and Materials优秀青年编委(2023)。先后以第一和通讯作者在Advanced Functional Materials, Nano-Micro Letters, Small, Advanced Composites and Hybrid Materials,国际知名期刊发表SCI论文100余篇,其中高被引论文8篇,同时授权中国发明专利4项。


代表性论著

1.Jingjing Zhang, Zihan Li, Xiaosi Qi(*), Xiu Gong, Ren Xie, Chaoyong Deng, Wei Zhong, Youwei Du. Constructing flower-like core@shell MoSe2-based nanocomposites as a novel and high-efficient microwave absorber, Composites Part B-Engineering 2021, 222, 109067.

2. Ren Xie, Haifu Huang, Xiaosi Qi(*), Geng Wei. Significant enhancement of the electrochemical performance of hierarchical Co3O4 electrodes for supercapacitors via architecture design and training activation, Journal of Energy Storage 2021, 35, 102258.

3. Xiu Gong, Ting Wang, Guilin Yin, Qiong Peng, Yanli Chen, Xu Wang, Xiaosi Qi(*), Yurong Jiang, Zonghao Liu, Yan Shen, Mingkui Wang. Modulated growth of high-quality CsPbI3 perovskite film using a molybdenum modified SnO2 layer for highly efficient solar cells†, Journal of Materials Chemistry A 2021, 9, 25567–25575.

4.Chen Li, Zihan Li, Xiaosi Qi(*), Xiu Gong, Yanli Chen, Qiong Peng, Chaoyong Deng, Tao Jing, Wei Zhong. A generalizable strategy for constructing ultralight three-dimensional hierarchical network heterostructure as high-efficient microwave absorber, Journal of Colloid and Interface Science 2022, 605, 13.

5.Chen Li, Qiong Peng, Xiaosi Qi(*), Yanli Chen, Xiu Gong, Xu Wang, Chaoyong Deng, Wei Zhong, Youwei Du. Morphology optimization strategy of flower-like CoNi2S4Co9S8@MoS2 core@shell nanocomposites to achieve extraordinary microwave absorption performances, Journal of Colloid and Interface Science 2022, 606, 1128.

6.Yongchao Rao, Lin Long, Tao Jing, Xiaosi Qi(*), Qiong Peng,Xiu Gong, Yanli Chen, Ren Xie, Wei Zhong, Youwei Du. Magnetic modulation of core@shell MoS2-based flower-like multicomponent nanocomposites to improve microwave attenuation, Journal of Colloid and Interface Science 2022, 608, 2387.

7.Yongchao Rao, Xiaosi Qi(*), Qiong Peng, Yanli Chen, Xiu Gong, Ren Xie, Wei Zhong. Mixed-dimensional conductive network heterostructures: An effective interfacial strategy to aggrandize dielectric loss for designing microwave absorbers, Journal of Alloys and Compounds 2022, 910, 164974.

8.Chen Li, Xiaosi Qi(*), Xiu Gong, Qiong Peng, Yanli Chen, Ren Xie, Wei Zhong. Magnetic-dielectric synergy and interfacial engineering to design yolk-shell structured CoNi@void@C and CoNi@void@C@MoS2 nanocomposites with tunable and strong wideband microwave absorption, Nano Research 2022, 15, 6761.

9.Jingjing Zhang, Xiaosi Qi(*), Xiu Gong, Qiong Peng, Yanli Chen, Ren Xie, Wei Zhong. Microstructure optimization of core@shell structured MSe2/FeSe2@MoSe2 (M = Co, Ni) flower-like multicomponent nanocomposites towards high-efficiency microwave absorption, Journal of Materials Science & Technology 2022, 128, 59.

10.Abdou Karim Darboe, Xiaosi Qi(*), Xiu Gong, Qiong Peng, Yanli Chen, Ren Xie, Wei Zhong, Guanglei Wu. Constructing MoSe2/MoS2 and MoS2/MoSe2 inner and outer-interchangeable flower-like heterojunctions: a combined strategy of interface polarization and morphology configuration to optimize microwave absorption performance, Journal of Colloid and Interface Science 2022, 624, 204.

11.Junxiong Xiao, Xiaosi Qi(*), Xiu Gong, Qiong Peng, Yanli Chen, Ren Xie, Wei Zhong. Defect and interface engineering in core@shell structure hollow carbon@MoS2 nanocomposites for boosted microwave absorption performance, Nano Research 2022, 14, 7778.

12. Yanli Chen, Jiaqi Ma, Qiong Peng, Xiu Gong, Jie Lin, Xiaosi Qi(*), Hang Guo. Metaphosphate-Bridged Interface Boosts High-Performance Lithium Storage, ACS Appl. Mater. Interfaces 2022, 14, 2089620906.

13.Junxiong Xiao, Xiaosi Qi(*), Xiu Gong, Qiong Peng, Yanli Chen, Ren Xie, WeiZhong. Tunable and improved microwave absorption of flower-like core@shell MFe2O4@MoS2 (M = Mn, Ni and Zn) nanocomposites by defect and interface engineering, Journal of Materials Science & Technology2023, 139, 137-146.

14. Qiqin Liang, Jingjing Zhang, Xiaosi Qi(*), Lei Wang, Junfei Ding, Xiu Gong, Jingliang Yang, Yanli Chen, Yunpeng Qu, Qiong Peng, Wei Zhong. From core@shellZnSe/FeSe2@MoSe2 to core@shell@shell magnetic ZnFe2O4@C@MoSe2 flower-like nanocomposites: an effective strategy to boost microwave absorption performance of MoSe2-based nanocomposites, Materials Today Physics 2023, 30, 100952.

15.Junxiong Xiao, Xiaosi Qi(*), Lei Wang, Tao Jing, Jing-Liang Yang, Xiu Gong, Yanli Chen, Yunpeng Qu, Qiong Peng, and Wei Zhong. Anion regulating endows core@shell structured hollow carbon spheres@MoSxSe2-x with tunable and boosted microwave absorption performance, Nano Research 2023, https://doi.org/10.1007/s12274-023-5433-4.

16. Qiqin Liang, Lei Wang, Xiaosi Qi(*), Qiong Peng , Xiu Gong, Yanli Chen, Ren Xie, Wei Zhong. Hierarchical engineering of CoNi@Air@C/SiO2@Polypyrrole multicomponent nanocubes to improve the dielectric loss capability and magnetic-dielectric synergy, Journal of Materials Science & Technology 2023, 147, 37-46.

17.Tianming Jia, Xiaosi Qi(*), Lei Wang, Jing-Liang Yang, Xiu Gong, Yanli Chen, Yunpeng Qu, Qiong Peng, Wei Zhong. Constructing mixed-dimensional lightweight flexible carbon foam/carbon nanotubes-based heterostructures an effective strategy to achieve tunable and boosted microwave absorption, Carbon 2023, 206, 364-374.

18. Qiqin Liang, Yanling Hao, Xiaosi Qi(*), Junfei Ding, Yunpeng Qu, Xiu Gong, Yanli Chen, Jingliang Yang, Qiong Peng, Wei Zhong. Prussian blue analogues derive yolk-shell structured magnetic carbon-based multicomponent nanocomposites toward excellent microwave absorption with tunable chemical composition, Materials Today Physics 2023, 35, 101125.

19. Lele Xiang, Xiaosi Qi(*), Yongchao Rao, Lei Wang, Xiu Gong, Yanli Chen, Qiong Peng, Wei Zhong. A simple strategy to develop heterostructured carbon paper/Co nanoparticles composites with lightweight, tunable and broadband microwave absorption, Materials Today Physics 2023, 34, 101030.

20. Ziqing Yang, Xiaosi Qi(*), Chen Li, Qiqing Liang, Lei Wang, Junfei Ding, Yunpeng Qu, Xiu Gong, Wei Zhong. Core@shell CoNi2S4/Co9S8@SiO2@MoS2 flower-like multicomponent nanocomposites: An effective strategy to aggrandize interfacial polarization for microwave absorption, Materials Today Physics 2023, 36, 101139.

23. Lele Xiang, Abdou Karim Darboe, Zhihong Luo, Xiaosi Qi(*), Jiao jing Shao, Xiao‑Juan Ye, Chun‑Sheng Liu, Kai Sun, Yunpeng Qu, Jing Xu, Wei Zhong. Constructing two‑dimensional/two‑dimensional reduced graphene oxide/MoX2 (X=Se and S) van der Waals heterojunctions: a combined composition modulation and interface engineering strategy for microwave absorption. Advanced Composites and Hybrid Materials, 2023, 6, 215.

21. Yongchao Rao, Xiaosi Qi(*), Qiong Peng, Yanli Chen, Xiu Gong, Ren Xie, Wei Zhong. Flower-like NiO to flower-like NiO/Ni@C microspheres: an effective strategy to comprehensively improve the loss capabilities, Journal of Colloid and Interface Science 2023, 629, 981.

22. Yunpeng Qu, Qiong Peng a, Yunlei Zhou b, Farid Manshaii, Shaolei Wang, Kaidong Wang, Peitao Xie, Xiaosi Qi(*), Kai Sun. Fine-tunable ε′-negative response derived from low-frequency plasma oscillation in graphene/polyaniline metacomposites, Composites Communications 2023, 44, 101750.

23. Lin Long, Xiaosi Qi(*), Lei Wang, Shaohong Cai, Mingsen Deng. Constructing flower-like core@shell structured CoFe@MoO2/MoS2 magnetic nanocomposites for strong wideband microwave absorption, Materials Today Physics 2023, 36, 101159.

24. Shuhan Fan, Qu Yang, Guilin Yin, Xiaosi Qi(*), Yuyu Feng, Junfei Ding, Qiong Peng, Yunpeng Qu, Qinglong Wang, Yan Shen, Mingkui Wang, Xiu Gong. All-Inorganic Perovskite NiTiO3/Cs3Sb2I9 Heterostructure for Photocatalytic CO2 Reduction to CH4 with High Selectivity, small, 2024, https://doi.org/10.1002/smll.202311978.

25. Beibei Zhan, Yanling Hao, Xiaosi Qi(*), Yunpeng Qu, Junfei Ding, Jing-liang Yang, Xiu Gong, Yanli Chen, Qiong Peng, Wei Zhong. Multifunctional cellular carbon foams derived from chitosan toward self-cleaning, thermal insulation, and highly efficient

microwave absorption properties, Nano research, 2024, 17, 927.

26. Tianming Jia, Yanling Hao, Xiaosi Qi (*), Yongchao Rao, Lei Wang, Junfei Ding, Yunpeng Qu, Wei Zhong. Interface engineering and impedance matching strategy to develop core@shell urchin-like NiO/Ni@carbon nanotubes nanocomposites for microwave absorption, Journal of Materials Science & Technology, 2024, 176, 1-12.

27. Junxiong Xiao, Beibei Zhan, Xiaosi Qi(*), Junfei Ding, Yunpeng Qu, Xiu Gong,  Jing-Liang Yang, Lei Wang, We Zhong , Renchao Che. Metal Valence State Modulation Strategy to Design Core@shell Hollow Carbon Microspheres@MoSe2/MoOx Multicomponent Composites for Anti-Corrosion and Microwave Absorption, Small, 2024, https://doi.org/10.1002/smll.202311312.

28. Yilin Feng, Xiu Gong, Shuhan Fan, Zhuojun Jiang, Jingliang Yang, Yunpeng Qu, Yanli Chen, Qiong Peng, Junfei Ding, Hui Shen, Xiaosi Qi(*), Mingkui Wang. Constructing Robust Interfacial Chemical Bond Enhanced Charge Transfer in S-Scheme 3D/2D Heterojunction for CO2 Photoreduction, Advanced Functional Materials, 2024, https://doi.org/10.1002/adfm.202403502.

29. Beibei Zhan, Yanling Hao, Xiaosi Qi(*), Yunpeng Qu, Junfei Ding, Jing-liang Yang, Xiu Gong, Yanli Chen, Qiong Peng, Wei Zhong. Mixed-dimensional Assembly Strategy to Construct Reduced Graphene Oxide/Carbon Foams Heterostructures for Microwave Absorption, Anti-corrosion and Thermal Insulation, Nano-Micro Letters, 202416, 221.

30. Yunpeng Qu, Yunlei Zhou, Qiuyun Yang, Jun Cao, Yao Liu, Xiaosi Qi(*), Shan Jiang. Lignin-Derived Lightweight Carbon Aerogels for Tunable Epsilon-Negative Response, Advanced Science, 2024, 2401767.

31. Shucheng Liu, Yu Shuai, Xiaosi Qi(*), Zhao Ding, Yi Liu. Unlocking high-efficiency oxygen evolution reaction through Co-N coordination engineering in Co@N-doped porous carbon core–shell nanoparticles Nano Research, 2024, https://doi.org/10.1007/s12274-024-6775-2.

32. Jing-Liang Yang, Hong-Jia Wang, Xiaosi Qi(*), Qing-Na Zheng, Jing-Hua Tian, Hua Zhang, and Jian-Feng Li. Understanding the Behaviors of Plasmon-Induced Hot Carriers and Their Applications in Photocatalysis, ACS Appl. Mater. Interfaces 2024, 16, 1214912160,

33. Beibei Zhan, Yanling Hao, Xiaosi Qi(*), Yunpeng Qu, Junfei Ding, Jingliang Yang, Xiu Gong, Yanli Chen, Qiong Peng, Wei Zhong. Multifunctional cellular carbon foams derived from chitosan toward self-cleaning, thermal insulation, and highly efficient microwave absorption properties. Nano Research, 2024, 17, 927-938.

34. Yun-Peng Qu, Hai-Kun Wu, Pei-Tao Xie, Ni Zeng, Yan-Li Chen, Xiu Gong, Jing-Liang Yang, Qiong Peng, Yu Xie, Xiaosi Qi(*). Carbon nanotube-carbon black/CaCu3Ti4O12 ternary metacomposites with tunable negative permittivity and thermal conductivity fabricated by spark plasma sintering, RARE METALS 2024, https://doi.org/10.1007/s12598-023-02346-5.

35. Junxiong Xiao, Beibei Zhan, Mukun He, Xiaosi Qi(*), Xiu Gong, Jing-Liang Yang, Yunpeng Qu, Junfei Ding, Wei Zhong, Junwei Gu. Interfacial Polarization Loss Improvement Induced by the Hollow Engineering of Necklace-like PAN/Carbon Nanofibers for Boosted Microwave Absorption, Advanced Functional Materials, 2024, https://doi.org/10.1002/adfm.202316722.

36. Haozhe Zhang, Xiu Gong, Qu Yang, Xuncheng Liu, Cheng Liu, Junfei Ding, Yanli Chen, Qiong Peng, Jing-Liang Yang, Yunpeng Qu, Xiaosi Qi(*), Zonghao Liu. Constructing Robust Top Heterointerface with Quinoid Polymer for High Performance CsPbI3 Solar Cells. ACS Materials Letters, 2024, 6, 1231.

37. Pengfei Shu, Qiong Peng, Tingting Luo, Junfei Ding, Xiu Gong, Jian Zhou, Yadong Yu, Xiaosi Qi(*), Zhimei Sun. Bidirectional electron transfer boosts Li–CO2 electrochemistry, Journal of Materials Chemistry A, 2024, 12, 6515.

38. Ziqing Yang, Qiqin Liang, Xiaosi Qi(*), Beibei Zhana, Xiu Gong, Yunpeng Qu, Junfei Ding, Jing-Liang Yang, Yanli Chen, Qiong Peng, Wei Zhong. Hollow engineering in CoNi@Air@C@MoS2 multicomponent composites derived from bimetallic CoNi Prussian blue analogs for ultra-wide bandwidth and strong electromagnetic wave absorption, Journal of Materials Science & Technology 2025, 212, 35–43.

39. Yaoyi Li, Xiaosi Qi(*), Beibei Zhan, Junfei Ding, Yunpeng Qu, Xiu Gong, Jing-Liang Yang, Yanli Chen, Qiong Peng, Wei Zhong, Kai Sun. Hollow engineering and component optimization strategy to construct flower-like yolk-shell structure SiO2@Void@C@WS2 multicomponent nanocomposites for microwave absorption, Journal of Materials Science & Technology 2025, 212, 96–104.

40. Jiaqi Ma, Yanli Chen, Qiong Peng, Yunpeng Qu, Junfei Ding, Xiu Gong, Jing-Liang Yang, Xiaosi Qi(*), Yunlei Zhou. Low-temperature induced crystallographic orientation boosting the Li storage performance of Na2MoO4 ·2H2O, Rare Metals 2024, https://doi.org/10.1007/s12598-024-02905-4.

41. Beibei Zhan, Yunpeng Qu, Xiaosi Qi(*), Junfei Ding, Jiao-jing Shao, Xiu Gong, Jing-Liang Yang, Yanli Chen, Qiong Peng, Wei Zhong, Hualiang Lv. Mixed‑Dimensional Assembly Strategy to Construct Reduced Graphene Oxide/Carbon Foams Heterostructures for Microwave Absorption, Anti‑Corrosion and Thermal Insulation. Nano-Micro Lett. (2024) 16:221

42. Yunpeng Qu, Yunlei Zhou, Yang Luo, Yao Liu, Junfei Ding, Yanli Chen, Xiu Gong, Jingliang Yang, Qiong Peng, Xiaosi Qi(*). Universal paradigm of ternary metacomposites with tunable epsilon-negative and epsilon-near-zero response for perfect electromagnetic shielding, RARE METALS 2024, https://doi.org/10.1007/s12598-023-02510-x.


版本日期:2024.8