杨康



邮箱:kangyang@yangtzeu.edu.cn

研究方向:纳米光学、表面等离激元、微纳加工

 

个人简介

杨康,男,博士,讲师,硕士生导师。

目前主要从事表面等离激元金属纳米结构的制备、性质表征及应用方面的研究。

近年来发表SCI论文16篇,其中以第一作者/通讯作者发表论文8篇。。

 

教育/工作经历:

2010-2014年,武汉科技大学金属材料工程专业,工学学士

2014-2017年,华南师范大学生物物理学专业,理学硕士

2017-2021年,厦门大学分析化学专业,理学博士

2021年—至今,长江大学物理与光电工程学院,讲师。

科研项目情况

国自然科学基金-青年科学基金项目C22202017),主持2023-2025年,30

 

代表性论文:截至时间202512

[1] Linewidth narrowing and sensitivity improvement of a Au nanohole array sensor by interacting with a bottom metal film. Kang Yang*, Shengjie Huang. Mater. Today Commun., 2025, 46, 112676.

[2] Plasmonic Ultrafast All-Optical Switching with a Superior On−Off Ratio. Xiaoxiang Dong, Yonglin He, Renxian Gao, Kang Yang, Jingyu Wang, Weimin Yang, Jiayu Li, Bin Ren*, Ming-De Li*, and Zhilin Yang*. Nano Lett., 2025, 25, 4005-4012.

[3] Gap-free hybridized plasmonics with tunable decay channels for surface-enhanced Raman spectroscopy. Xu Yao, Sen Yan, Kang Yang, Yifan Bao, Bin Ren, Xiang Wang*. Sens. Actuat. B-Chem., 2025, 425, 136968.

[4] The Refractive Index Sensing Performance of Au and Ag Nanoparticles Under Different Surrounding Environment. Meiying Li, Kang Yang*. Part. Part. Syst. Charact., 2024, 41, 2300143

[5] The Sensitivity of a Hexagonal Au Nanohole Array under Different Incident Angles. Kang Yang*, Meiying Li. Biosensors., 2023, 13, 654.

[6] Nanostructured surface plasmon resonance sensors: Toward narrow linewidths. Kang Yang*, Yan Chen, Sen Yan , Wenxing Yang*. Heliyon., 2023, 9, e16598.

[7] Ultrasensitive and tunable multi-narrowband metamaterial absorber. Xinmeng Huang, Yan Chen*, Shanjun Chen*, Kang Yang, Jian Liang, Zhangkun Zhou, Wei Dai*. Results Phys., 2023, 47, 106364.

[8] Accelerated interfacial proton transfer for promoting electrocatalytic activity. Kai-Chao Deng, Zhi-Xuan Lu, Juan-Juan Sun, Jin-Yu Ye, Fan Dong, Hai-Sheng Su, Kang Yang, Matthew M. Sartin, Sen Yan, Jun Cheng, Zhi-You Zhou and Bin Ren*, Chem. Sci., 2022, 13, 10884.

[9] Operando Electrochemical X-ray Diffraction and Raman Spectroscopic Studies Revealing the Alkali-Metal Ion Intercalation Mechanism in Prussian Blue Analogues. Hongyang Li, Jingxin Huang, Kang Yang, Zhixuan Lu, Sen Yan, Haisheng Su, Chuan Liu, Xiang Wang*, and Bin Ren*, J. Phys. Chem. Lett., 2022, 13, 479−485.

[10] Metallic Plasmonic Array Structures: Principles, Fabrications, Properties, and Applications. Kang Yang, Xu Yao, Bowen Liu*, Bin Ren*, Adv. Mater., 2021, 33, 2007988.

[11] Large-Area Plasmonic Metamaterial with Thickness-Dependent Absorption. Kang Yang, Jingyu Wang, Xu Yao, Danya Lyu, Jinfeng Zhu, Zhilin Yang, Bowen Liu,* and Bin Ren*, Adv. Optical Mater., 2021, 9, 2001375.

[12] Detection of microRNA using a polydopamine mediated bimetallic SERS substrate and a re-circulated enzymatic amplification system. Ningjing Jiang, Yongjun Hu*, Wei Wei, Tingfeng Zhu, Kang Yang, Guichi Zhu, Meng Yu, Microchim. Acta, 2019, 186, 65.

[13] A novel SERS nanoprobe based on the use of core-shell nanoparticles with embedded reporter molecule to detect E. coli O157:H7 with high sensitivity. Tingfeng Zhu, Yongjun Hu*, Kang Yang, Ning Dong, Meng Yu, Ningjing Jiang, Microchim. Acta, 2018, 185, 30.

[14] A novel SERS-based magnetic aptasensor for prostate specific antigen assay with high sensitivity. Kang Yang, Yongjun Hu*, Ning Dong, Guichi Zhu, Tingfeng Zhu, Ningjing Jiang, Biosens. Bioelectron., 2017, 94, 286-291.

[15] A novel biosensor based on competitive SERS immunoassay and magnetic separation for accurate and sensitive detection of chloramphenicol. Kang Yang, Yongjun Hu*, Ning Dong, Biosens. Bioelectron., 2016, 80, 373-377.

[16] Development of aptamer-modified SERS nanosensor and oligonucleotide chip to quantitatively detect melamine in milk with high sensitivity. Ning Dong, Yongjun Hu*, Kang Yang, Jianzhi Liu, Sens. Actuators B, 2016, 228, 85-93.

 

荣誉获奖:

获祥华助学金(2021年);

“天美-爱丁堡仪器”奖学金(2020年);

获厦门大学博士生论坛优秀墙报奖(2019年);

获硕士研究生国家奖学金(2016年);

获华南师范大学第五届研究生“十佳优秀学术论文”奖(2016年);

 

发明专利:

1. 发明专利:一种水体中氯霉素CAP的定量检测方法。授权公告号:CN 105372226 B

2. 发明专利:一种基于磁核-金卫星组装体的PSA检测方法。授权公告号:CN 106525814 B

3. 发明专利:一种大面积高度有序阵列结构及其制备方法。申请号:2025114099877

4. 发明专利:一种大面积硅纳米图案结构及其制备方法。申请号:202511436147X

 

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