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胡金勇

文章来源:湘潭大学物理学院 发布时间:2018-09-29 00:00:00 浏览次数:

E8629

基本信息

部  门: 微电子科学与工程系

  称: 副教授

  箱: jyhu_scut@126.com

办公室:二教207B


   胡金勇,博士生导师,中共党员,系主任,湖湘青年英才(“荷尖”人才),湘潭大学韶峰学者,湘潭市D类高层次人才,湖南省电子信息技术研究会理事、湖南省电子学会理事、Rare Metals青年编委。2018年6月于中山大学获光学专业博士学位,2018年9月入职湘潭大学物理与光电工程学院从事教学研究工作,现为湘潭大学微电子科学与工程系主任。主要从事微纳光电传感芯片的设计及其气体/湿度传感应用研究。近5年来,先后主持承担国家自然科学基金、湖南省科技创新计划项目、湖南省自然科学基金、教育部产学研协同育人项目、湖南省教育厅科研项目、湖南省教育改革项目等10余项,在ACS Sensors、Sensors and Actuators B: Chemical、Analytical Chemistry等国际知名期刊上发表SCI学术论文40余篇(含中科院一区top期刊论文18篇,ESI高被引2篇),申请专利10余项。

学习工作经历

2018.08—至今       湘潭大学 物理与光电工程学院   专任教师

2015.082018.06  中山大学 物理学院 光学专业 博士研究生

2011.09-2014.06     华南理工大学  物理与光电学院 光学专业   硕士研究生

2007.09-2011.06     湖南工业大学 理学院  应用物理学   本科

研究方向

1、微纳光电传感芯片的设计及其性能优化。

2、微纳光电传感芯片在气体/湿度探测中的应用研究。

3、纳米光子芯片的设计及其光场调控相关的理论研究。

招收研究生专业:物理学(光学与光电科学技术方向)(博士)、电子科学与技术(学硕)、电子信息(集成电路工程)(专硕)。欢迎对微纳光电传感方向感兴趣的同学报考!!!

科研项目

8、国家自然科学基金项目面上项目,62571471,2026-2029年,项目负责人;

7、湖南省自科基金面上项目,2026JJ50226    项目负责人, 2026-2028;

6、湖南省教育厅优秀青年项目,25B0167, 2026-2028,项目负责人;

5、湖南省科技厅, 湖南省科技创新计划项目, 2023RC3133,芙蓉计划湖湘青年英才项目,2023-2026,项目负责人

4、国自科青年科学基金项目621014772022-2024年,项目负责人;

3、湖南省自科青年基金项目,2021JJ405422021-2023年,项目负责人;

2、湖南省教育厅一般项目,19C17392019-2021年,项目负责人;

1、湘潭大学科研启动项目18QDZ392018-2021年,项目负责人。

 

代表性成果(专著、论文和专利等)


 [29] Jinyong Hu*; Chentian Wu; Bohao Liu; Yong Zhang*;A dual-mode paper-based humidity sensor: Optical and electrical dual-signal sensing platform for multifunctional applications. Sensors and Actuators: B. Chemical, 2025, 440: 137890.(中科院一区TOP)

[28] Shunhua Luo,Bohao Liu, Jinyong Hu,* and Yong Zhang*. Foldable and Wearable Fabric Ammonia Sensor Based on a Polyaniline/Polyacrylonitrile Nanofber for Smart Home Applications. Anal. Chem. 2025, 97, 9976-9984(中科院一区TOP)

[27] Jinyong Hu*; Yu Zhao; Qihao Wang; Yong Zhang*; Full-spectrum visible light driven chemiresistive sensor based on g-C3N4/SnS/Au heterostructures for reliable NO2 detection at room temperature, Sensors and Actuators: B. Chemical, 2025, 442: 138103.(中科院一区TOP)

[26] Jinyong Hu*; Yu Zhao; Bohao Liu; Yong Zhang*; Indoor white light activated NO2 sensor based on Au@MoS2/SnS nanocomposites with enhanced responsiveness at room temperature, Sensors and Actuators: B. Chemical, 2025, 433: 137556. (中科院一区TOP)

[25] Can Yang, Minghe Luo, Xiongwu Ju, Jinyong Hu*. Ultra-narrow dual-band perfect absorber based on double-slotted silicon nanodisk arrays. Journal of Physics D: Applied Physics, 2024, 57, 345104. (本科生一作)

[24] Xiongwu Ju, Minghe Luo, Can Yang, Jinyong Hu*. Strong field enhancement and ultra-narrow linewidth based on the coupling of anapole/gap modes in silicon nanodimer-ring arrays, Results in Physics, 2024, 60, 107633. (*通讯作者,本科生一作)

[23] Jinyong Hu*, Hong Lei, Hongyu Zhang, Xiong-Xiong Xue, Xinpeng Wang, Conghui Wang*, Yong Zhang*. High reliable gas sensor based on crystal-facet regulated α-Fe2O3 nanocrystals for rapid detection of exhaled acetone. Rare Metals, 43(12):6500–6515. (中科院一区TOP)

[22] Jinyong Hu, Xinpeng Wang, Hong Lei, Minghe Luo, Yong ZhangPlasmonic photothermal driven MXene-based gas sensor for highly sensitive NO2 detection at room temperature. Sensors & Actuators: B. Chemical 407 (2024) 135422. (中科院一区TOP)

[21] Risheng Cao , Zhengyu Lu, Jinyong Hu*, and Yong Zhang*. Carbon-Based FET-Type Gas Sensor for the Detection of ppb-Level Benzene at Room Temperature. Chemosensors, 2024, 12: 179.

[20]     Jinyong Hu*, Xing Liu, Jiawei   Zhang, Xin Gu, Yong Zhang*, Plasmon-activated NO2 sensor based on Au@MoS2   core-shell nanoparticles with heightened sensitivity and full recoverability,   Sensors and Actuators: B. Chemical, 2023, 382, 133505. (一作,中科院一区TOPIF9.221)   https://doi.org/10.1016/j.snb.2023.133505

[19]      Jinyong Hu*, Jiawei Zhang, Xing   Liu, , Hongyu Zhang, Xiong-Xiong Xue, Yong Zhang*, Highly selective NO2 sensor based on Au/SnS2   nano-heterostructures via visible-light modulation, Applied Surface   Science, 2023, 623, 157093. (一作,中科院一区TOPIF7.392)   https://doi.org/10.1016/j.apsusc.2023.157093  

[18]      Jinyong Hu, Xiqi Chen, Yong   Zhang*, Batch fabrication of formaldehyde sensors based on LaFeO3 thin film   with ppb-level detection limit, Sensors and Actuators: B. Chemical, 2021,   349, 130378. (一作,中科院一区TOPIF9.221)   https://doi.org/10.1016/j.snb.2021.130738 

[17]      Jinyong Hu, Meiyan Wu, Li Jiang,   Zhensheng Zhong, Zhangkai Zhou, Thitima Rujiralai and Jie Ma*. Combining Gold   Nanoparticle Antennas with Single Molecule Fluorescence Resonance Energy   Transfer (smFRET) to Study DNA Hairpin Dynamics. Nanoscale, 2018, 10,   6611-6619. (中科院一区TOPIF8.307)   https://doi.org/10.1039/c7nr08397a   

[16]      Xiqi Chen#, Jinyong   Hu#,  Pei Chen, Mengqi Yin, Fanpu Meng, Yong Zhang*, UV-light-assisted   NO2 gas sensor based on WS2/PbS heterostructures with full recoverability and   reliable anti-humidity ability, Sensors and Actuators: B. Chemical,   2021, 339, 129902. (#共同一作,中科院一区TOPIF9.221) 

[15]      Yu Sun#, Jinyong   Hu#, Yong Zhang*.Visible light assisted trace gaseous NO2 sensor with   anti-humidity ability via LSPR enhancement effect. Sensors &   Actuators: B. Chemical 367, 2022, 132032.(#共同一作,中科院一区TOPIF9.221) 

[14]      Junjiang Tan; Jinyong   Hu*; Jianxu Ren; Jinfeng Peng; Can Liu; Yiqiao Song; Yong Zhang*; Fast   response speed of mechanically exfoliated MoS2 modified by PbS in detecting   NO2, Chinese Chemical Letters, 2020, 31, 2103-2108.*通讯作者,中科院一区IF8.455  https://doi.org/10.1016/j.cclet.2020.03.060 

[13]      Pei Chen#, Jinyong   Hu#, Mengqi Yin, Wangdi Bai, Xiqi Chen, and Yong Zhang*, MoS2 Nanoflowers   Decorated with Au Nanoparticles for Visible-Light-Enhanced Gas Sensing, ACS   Appl. Nano Mater. 2021, 4, 6, 5981–5991. (#共同一作,IF6.140) 

[12]      Jia-Bei Liu, Jin-Yong   Hu*, Can Liu, Yu-Ming Tan, Xiang Peng, Yong Zhang* .Mechanically   exfoliated MoS2 nanosheets decorated with SnS2nanoparticles for   high-stability gas sensors at room temperature. Rare Metals, 2021, 40,   61536-1544.*通讯作者,中科院一区IF6.318.

[11]  Ming-Peng Huang#, Jin-Yong Hu#,   Qian-Wei Xiang, Jia-Bei Liu, Jian-Xu Ren, Meng-Qi Yin, Jue-Xian Cao* , Yong   Zhang*. Enhanced desorption property of hydrochromic material NiI2 by organic   hybridization. Rare Metals, 2022, 41(5):1529–1536. (#共同一作,中科院一区IF6.318). 

[10]  Jinyong Hu*, Chuxuan Tan, Wangdi   Bai, Yiming Li, Qi Lin and Ling-Ling Wang. Dielectric nanocavity-coupled   surface lattice resonances for high-efficiency plasmonic sensing. Journal of   Physics D: Applied Physics  2022, 55, 075105 (*通讯作者,JCR二区).    https://doi.org/10.1088/1361-6463/ac31f2 

[9]   Minghe Luo, Jinyong Hu*,   Yiming Li, Wangdi Bai, Runlu Zhang, Qi Lin, Lingling Wang.  Anapole-assisted   ultra-narrow-band lattice resonance in slotted silicon nanodisk arrays. Journal   of Physics D: Applied Physics, 2023, 56, 375102 (*通讯作者,本科生一作).   

[8]  Jinyong Hu*, Wangdi Bai, Chuxuan   Tan,  Yiming Li, Qi Lin and Ling-Ling Wang. Highly electric field   enhancement induced by anapole modes coupling in the hybrid dielectric–metal   nanoantenna. Optics Communications, 2022, 511, 127987 (*通讯作者,JCR二区).   

[7]   Mengqi Yin#, Jinyong Hu#,   Mingpeng Huang, Pei Chen, and Yong Zhang*, Moisture-induced reversible   material transition behavior of Nickel (II) bromide for low humidity   detection, Sensors and Actuators: A. Physical, 2021, 331, 112911. (#共同一作,中科院二区).

 [6]  Fanpu Meng#, Jinyong Hu#,   Can Liu, Yuming Tan, and Yong Zhang*, Highly sensitive and low detection   limit of acetone gas sensor based on porous YbFeO3 nanocrystallines, Chemical   Physics Letters, 2021, 780, 138925. (#共同一作,中科院三区).

 [5]   YimingLi#, ChuxuanTan#, JinyongHu*,   WangdiBai, RunluZhang, QiLin, YongZhang*, LinglingWang. Ultra-narrow band   perfect absorbance induced by magnetic lattice resonances in dielectric dimer   metamaterials. Results in Physics , 2022, 39, 105730.   https://doi.org/10.1016/j.rinp.2022.105730. (指导的本科生为一作,*通讯作者) 

[4]  Runlu Zhang, Jinyong Hu*,   Yiming Li, Minghe Luo, Chuxuan Tan, Wangdi Bai, Qi Lin and Lingling Wang.   Ultra-narrow-band absorption enhancement of monolayer graphene based on   surface lattice resonance modes. Japanese Journal of Applied Physics, 2022,   61, 070906. https://doi.org/10.35848/1347-4065/ac748d. (指导的本科生为一作,*通讯作者)

[3]  Can Liu, Jinyong Hu, Guang   Wu, Juexian Cao, Zhiyong Zhang, and Yong Zhang*, Carbon Nanotube-Based   Field-Effect Transistor-Type Sensor with a Sensing Gate for Ppb-Level   Formaldehyde Detection, ACS Appl. Mater. Interfaces, 2021, 13, 56309−56319 (中科院一区TOP,   IF10.383) 

[2]  Yunpeng Lin, Jinyong Hu, Wenbo   Zhang, Li Jiang, Deqi Yi, Thitima Rujiralai and Jie Ma*. Broadband   single-molecule fluorescence enhancement based on self-assembled Ag@Au dimer   plasmonic nanoantennas. Nanoscale, 2022,14, 17550-17560. (中科院一区TOPIF8.307) 

[1]  Can Liu, Yong Zhang*, Jinyong   Hu, Jianxu Ren, Yiqiao Song,  Jinfeng Peng*, Mo Ma,  Junjiang   Tan. Defects Suppression in MoS2 caused by W doped for enhanced   response/recovery behaviors against NO2. Materials Letters, 2020: 127961.


代表性成果(专利)

1胡金勇, 陈敏行. 一种基于石墨烯和狄拉克半金属的多功能远红外超材料吸收器及其制备方法,2025-09-04, CN 202511254932.3(中国发明专利)

2胡金勇 李子旭 赵宇 张勇. 一种高灵敏可见光全谱激活型敏感材料、NO2气体传感器及其制备方法与应用, 2025-03-25, CN 202510358451 .0(中国发明专利)

(3) 胡金勇; 豆淞铭; 王鑫鹏; 罗顺华; 张勇 ; 等离激元光热驱动的MXene基室温高灵敏NO2气体传感器及其制备方法, 2024-01-12, 中国, CN202410047052.8 (中国发明专利)

(4) 胡金勇; 罗顺华; 张佳伟; 张勇 ; 基于Au/SnS2纳米复合材料的可见光调制的高选择性NO2气体传感器及其制备方法, 2022-12-14, 中国, CN202211610278.1 (中国发明专利)

(5) 张勇; 陈佩; 胡金勇; 曹觉先 ; 基于Au@MoS2的局域表面等离子体增强NO2气体传感器及制备方法,2022-12-02, 中国, ZL 202110395520.7 (中国发明专利)

(6) 张勇; 石林; 胡金勇; 张志勇 ; 具有延栅结构的碳基FET型气体传感器及其制备方法, 2024-03-05,中国, CN202210713758.4 (中国发明专利)

(7) 张勇; 石林; 胡金勇; 张志勇 ; 具有延栅结构的碳基 FET 型气体传感器, 2022-10-14, 中国, ZL202221572388.9 (实用新型专利)

(8) 张勇; 彭祥; 刘佳蓓; 谭瑜鸣; 曹觉先; 胡金勇 ; 高重复性薄膜型PPB级甲醛气体传感器及其制备方法, 2023-08-29, 中国, ZL 202111360867.4(中国发明专利)

(9) 张勇; 孟繁朴; 曹觉先; 宋逸俏; 胡金勇; 张志勇 ; 甲醛气体传感器, 2021-05-14, 中国, ZL202022248769.9 (实用新型专利)


荣誉奖励

 

 

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