个人简介
郭团,男,研究员,博士生导师,美国光学学会会士,教育部长江学者特聘教授,国家优秀青年科学基金获得者,广东特支计划科技创新领军人才,暨南大学国华杰出学者。2007年在南开大学现代光学研究所获得博士学位,在加拿大卡尔顿大学和香港理工大学从事博士后研究,2010年加入暨南大学光子技术研究院,组建能源与生物光传感课题组。
从事光纤传感技术及其在新能源、生物、海洋、电力等领域应用研究。主持国家自然科学基金重点/优青/国合/面上/青年、广东省资源厅重点、广东省基金委重点、广州市产学研重大专项等科研项目。在Nature Communications(4篇)、Light:Science & Applications(4篇)、Energy & Environmental Science等权威期刊发表SCI论文150余篇(通讯作者90余篇),受邀撰写Advances in Optics and Photonics、Laser & Photonics Reviews、IEEE Journal of Lightwave Technology、Analytical and Bioanalytical Chemistry等邀请论文11篇,论文总引用7200余次,H因子47;编著中、英文学术著作6章节,包括Springer著作《Handbook of Optical Fibers》和《Advanced Fiber Sensing Technologies》等;受邀在SPIE Photonics Europe、OSA CLEO-PR、IEEE I2MTC、OFS等国际学术会议作邀请报告50余次;获授权发明专利30余项(包括美国专利4项);研究成果被欧盟能源战略发展规划《BATTERY 2030+》、美国科学促进会AAAS、Nature Photonics、Optics & Photonics News、Laser Focus World、Chemistry World和国家自然科学基金委等重点报道。
入选国际IEEE仪器与测量学会(IEEE Instrumentation and Measurement Society)光子技术委员会主席(2018-至今),担任期刊IEEE Journal of Lightwave Technology、IEEE Transactions on Instrumentation and Measurement、《中国科学:信息科学》等编委,中国光学工程学会光纤传感技术专委会理事、中国光学学会光电技术专委会委员、广东省光学学会理事等。荣获2018年度IEEE仪器与测量学会科技奖(IEEE-IMS Technical Award)和2022年度 IEEE仪器与测量学会最佳应用奖(IEEE-IMS Best Application Award)。
课题组网站:https://ipt.jnu.edu.cn/ofsgroup/main.htm
Google Scholar: http://scholar.google.com/citations?hl=en&user=K554nDgAAAAJ&view_op=list_works
学术荣誉
2024年,美国光学学会会士(Optica Fellow)
2023年,教育部长江学者特聘教授
2022年,IEEE仪器与测量学会最佳应用奖(IEEE-IMS Best Application Award)
2021年,暨南大学国华杰出学者
2019年,广东特支计划科技创新领军人才
2018年,IEEE仪器与测量学会科技奖(IEEE-IMS Technical Award)
2017年,国家优秀青年基金获得者
2014年,广东省特支计划科技创新青年拔尖人才
2011年,广州市珠江科技新星人才
学术任职
IEEE Instrumentation & Measurement Society光子技术委员会主席
IEEE Journal of Lightwave Technology期刊编委
IEEE Transactions on Instrumentation and Measurement期刊编委
Measurement: Energy期刊编委
The Innovation Energy期刊编委
《中国科学:信息科学》期刊青年编委
中国光学工程学会光纤传感技术委员会理事
中国光学学会光电技术专委会委员
广东省光学学会理事会理事
中国激光杂志社青年编辑委员会委员
主持项目
1. 国家自然科学基金重点项目:等离子体共振型光纤电化学电池原位检测原理与关键技术研究
批准号:62035006,2021-2025,项目负责人。
2. 国家优秀青年基金项目:光纤生物传感器
批准号:61722505,2018-2020,项目负责人。
3. 国家然科学基金国际合作项目:光纤等离子体共振声场矢量传感器
批准号: 62011530459,2021-2022,项目负责人。
4. 国家自然科学基金面上项目:宽频矢量声场光纤等离子体共振传感机理与关键技术研究
批准号:61975068,2020-2023,项目负责人。
5. 国家自然科学基金青年项目:正交偏振光纤二维振动矢量传感机理与组网技术研究
批准号:61205080,2013-2015,项目负责人。
6. 广东省海洋经济发展重点项目:海洋碳元素原位探测集成光子器件
批准号:GDNRC[2023]01,2023-2025,项目负责人。
7. 广东省特支计划科技创新领军人才:面向新能源储能的高精度光纤原位检测关键技术与应用研究
批准号:2019TX05X383,2020-2023,项目负责人。
8. 广东省自然科学基金重点项目:超宽频等离子体共振光纤声矢量传感机理与关键技术研究
批准号:2018B030311006,2018-2021,项目负责人。
9. 广州市产学研协同创新重大专项:输电线路风振光纤在线监测关键技术与系统开发
批准号:201604030084,2016-2018,项目负责人。
10. 广东省自然科学基金面上项目:探针式、高灵敏度、温变自校准镀膜光纤生化传感器研究
批准号:S2011010001631,2011-2013,项目负责人。
11. 广东省自然科学基金面上项目:探针式光纤矢量振动传感新机理与复用组网研究
批准号:S2012010008385,2012- 2014,项目负责人。
12. 广东省自然科学基金面上项目:融合“光栅共振”与“微球谐振”的光纤生物传感机制与关键技术研究
批准号:2014A030313387,2014-2017,项目负责人。
13. 广东省特支计划科技创新青年拔尖人才项目:高精度光纤生物医学传感关键技术与应用研究
批准号:2014TQ01X539,2015-2018,项目负责人。
14. 教育部博士学科点基金项目:微型化、高灵敏度表面等离子体共振光纤生化传感探针研究
批准号:20114401120006,2012-2014,项目负责人。
15. 广州市珠江科技新星专项:微型化、高灵敏度表面等离子体共振光纤生化传感探针研究
批准号:2011J2200014,2011-2014,项目负责人。
代表性论文、邀请综述与著作章节
代表性论文:
1. Wenxin Mei#, Zhi Liu#, Chengdong Wang, Xile Han, Pengjie Liu, Yubin Liu, Chuang Wu, Gaozhi Xiao, Jacques Albert, Hwa-yaw Tame, Jinhua Sun, Qingsong Wang* and Tuan Guo*, “Operando monitoring and safety early warning of commercial lithium-ion cells over thermal runaway via advanced lab-on-fiber technologies”,Nature Communications, (2023) 14:5251
2. Runlin Wang#, Haozhe Zhang#, Qiyu Liu#, Fu Liu#, Xile Han, Xiaoqing Liu, Kaiwei Li, Gaozhi Xiao, Jacques Albert, Xihong Lu*, Tuan Guo*, “Operando Optical Detection of Interfacial Ion Kinetics in Aqueous Batteries via Plasmonic Fibers”, Nature Communications,(2022)13: 547.
3. Changhai Lu#, Daotong You#, Juan Li, Long Wen, Baojun Li, Tuan Guo* and Zaizhu Lou*, Full-spectrum nonmetallic plasmonic carriers for efficient isopropanol dehydration, Nature Communications, (2022) 13:6984.
4. Christophe Caucheteur*, Tuan Guo*, Fu Liu, Bai-Ou Guan, Jacques Albert*, “Ultrasensitive plasmonic sensing in air using optical fibre spectral combs”, Nature Communications,(2016) 7: 13371.
5. Xile Han#, Hai Zhong#, Kaiwei Li#, Xiaobin Xue#, Wen Wu, Nan Hu, Xihong Lu, Jiaqiang Huang*, Gaozhi Xiao*, Yaohua Mai*, Tuan Guo*, “Operando monitoring of dendrite formation in lithium metal batteries via ultrasensitive tilted fiber Bragg grating sensors”, Light: Science & Applications, (2024) 01:220.(Selected as Back Cover)
6. Zhi Li#, Yongguang Xiao#, Fu Liu#, Xiangyu Yan, Daotong You, Kaiwei Li, Lixi Zeng, Mingshan Zhu*, Gaozhi Xiao*, Jacques Albert*, Tuan Guo*, Operando optical fiber monitoring of nanoscale and fast temperature changes during photoelectrocatalytic reactions , Light: Science & Applications, (2022) 11:220.
7. Lanhua Liu#, Xuejun Zhang#, Qian Zhu#, Kaiwei Li, Yun Lu, Xiaohong Zhou*, Tuan Guo*, “Ultrasensitive detection of endocrine disruptors via superfine plasmonic spectral combs for environmental sustainability”, Light: Science & Applications (2021) 10:181.
8. Jiajie Lao#, Peng Sun#, Fu Liu, Xuejun Zhang, Chuanxi Zhao, Wenjie Mai*, Tuan Guo*, Gaozhi Xiaod and Jacques Albert, “In Situ Plasmonic Optical Fiber Detection of the State of Charge of Supercapacitors for Renewable Energy Storage”, Light: Science & Applications, (2018) 7: 34. (Selected as Front Cover)
9. Jiaqiang Huang, Xile Han, Fu Liu, Charlotte Gervillié, Laura Albero Blanquer, Tuan Guo* and Jean-Marie Tarascon*, “Monitoring Battery Electrolyte Chemistry via In-operando Tilted Fiber Bragg Grating Sensors”, Energy & Environmental Science, Vol. 14, 2021, 6464–6475.
10. Lijiao Zu#, Xicheng Wang#, Peng Liu#, Jiwei Xie#, Xuejun Zhang, Weiru Liu, Zhencheng Li, Shiqing Zhang, Kaiwei Li, Ambra Giannetti, Wei Bi*, Francesco Chiavaioli*, Lei Shi*, Tuan Guo*, Ultrasensitive and multiple biomarker discrimination for Alzheimer's disease via plasmonic & microuidic sensing technologies, Advanced Science, (2024) 2308783. (Selected as Front Cover)
邀请综述:
1. Xiaobin Xue#, Xile Han#, Wanjun Li, Kaiwei Li, Fu Liu and Tuan Guo*, Operando Batteries Monitoring: Electrochemical Lab-on-fiber Sensing Technologies,Laser & Photonics Reviews, 2024, 2301298. Invited Review
2. Minghui Du, Shichao Lv* Jianrong Qiu, Tuan Guo* and Shifeng Zhou*, Multimaterial Fibers for Multifunctional Sensing Applications, Laser & Photonics Reviews, 2024, 2301125. Invited Review
3.Christophe Caucheteur*, Joel Villatoro, Fu Liu, Mederic Loyez, Tuan Guo, Jacques Albert, “Mode-division and Spatial-division Optical Fiber Sensors”, Advances in Optics and Photonics, Vol. 14, No. 1, March 2022, 1-86.Invited Review
4.Tuan Guo*, “Fiber grating assisted surface plasmon resonance for biochemical and electrochemical sensing, Journal of Lightwave Technology, Vol. 35, No. 16, Aug. 2017, 3323–3333. Invited Review
5. Christophe Caucheteur*, Tuan Guo*, Jacques Albert*, “Polarization-assisted fiber Bragg grating sensors: tutorial and review, Journal of Lightwave Technology, Vol. 35, No. 16, Aug. 2017, 3311–3322. Tutorial Review
6. Tuan Guo*, Fu Liu, Bai-Ou Guan, and Jacques Albert, Tilted fiber grating mechanical and biochemical sensors, Journal of Optics and Laser Technology, Vol. 78, April 2016, 19–33. Invited Review
7. Christophe Caucheteur, Tuan Guo, Jacques Albert*, Review of plasmonic fiber optic biochemical sensors: improving the limit of detection, Analytical and Bioanalytical Chemistry, Vol. 407, No. 14, May 2015, 3883–3897. Invited Review
8. Peiguang Yan*, Hao Chen, Aijiang Liu, Keyao Li, Shuangchen Ruan, Jinfei Ding, Xuhui Qiu, Tuan Guo, Self-starting mode-locking by fiber-integrated WS2 saturable absorber mirror, IEEE Journal of Selected Topics in Quantum Electronics, Vol. 23, No. 1, Jan. 2017, 1100106. Invited Paper
9. Tuan Guo*, Álvaro González-Vila, Médéric Loyez and Christophe Caucheteur*, “Plasmonic Optical Fiber-Grating Immunosensing: A Review”, Sensors, Vol. 17, Dec. 2017, 2732. Invited Review
10. 郭团*, 刘甫, 邵理阳, “倾斜光纤光栅传感器”, 《应用科学学报》, Vol. 36, No. 1, Jan. 2018, 75-103. 特邀综述
11. 郭团*, “等离子体共振光纤光栅生物传感器综述”, 《光学学报》, Vol. 38, No. 3, March 2018, 0328006G1. 特邀综述
著作章节:
1. 《Handbook of Optical Fibers》, Springer Nature, 2019 (Chapter of “Fiber Grating Devices”)
2. 《Advanced Fiber Sensing Technologies》, Springer Nature, 2020 (Chapter of “Optical Microfiber Sensors”)
3. 《Optical and Electronic Fibers》, Wiley, 2023 (Chapter of “Electrochemical Plasmonic Fibers for Operando Monitoring of Renewable Energy”)
4.《怎样在光纤上构建实验室》, 清华大学出版社, 2022, 变革性光科学与技术丛书, “十四五”时期国家重点出版物出版专项规划 (章节“倾斜光纤光栅传感实验室”)