主持或参加科研项目 :
1. 国家自然科学基金,41266001,环境参数对激光水中传输衰减特性的影响,2013/01-2016/12,55万元,结题,主持
2.国家自然科学基金地区项目,62163029
基于分子印迹光纤传感检测饮用水中痕量重金属离子的技术研究 国家自然科学基金项目 2021-2023年 主持
3. 教育部无损检测重点实验室开放基金项目,ZD201129009,用光学方法监测海洋参数,2011/12-2014/12, 2万元,结题,主持
4. 博士启动金项目,EA201108332,受激布里渊散射特性基础研究,2011/12-2016/12, 6万, 在研,主持
5. 国家自然科学基金地区项目,41666004,水深及水体特征参数对受激布里渊散射激光雷达探测性能影响的研究,41万元,2016/12-2019/12在研,参加
6. 2012年科技落地计划项目,DA201308399,基于布里渊散射激光雷达的水下环境参数探测技术研究,50万,2013/1-2015/12,结题,参加
7. 国家自然科学基金地区项目,41265011,基于开径式非相干宽带腔增强吸收光谱大气中HONO探测方法的研究,59万,2012/12-2016/12,在研,参加
8. 国家自然科学基金青年项目,41206084,水下受激布里渊散射增益系数及声子寿命对水体温度依赖性的研究,24万,2013/1-2015/12,结题,参加
9. 国家自然科学基金地区项目,41066001,受激布里渊散射阈值及对布里渊激光雷达探测性能影响的研究,26万, 2011/1-2013/12, 结题,参加
10. 国防基础预研一般项目,CK201108124,某水下环境探测参数技术(海军武器装备预先研究),90万,2011/1 -2015/12,结题,参加
11. 国防基础预研一般项目,CK201108184,某实现低可观测目标探测技术研究,150万,2011/1-2013/12,结题,参加
12. 国防基础预研一般项目,CK200708006,某隐身目标探测技术研究,600万,2011/1-2013/12, 结题,参加
13. 国防基础预研一般项目, CH200908032,激光布里渊散射反隐身技术研究, 2009/1-2011/12,结题,参加
14. 航空、航天基金及产学研项目, CH200908032,激光布里渊散射反隐身技术研究,10万,2009/1-2011/1,结题,参加
15. 江西省自然基金面上项目,CA201008167,激光在水中受激拉曼散射与受激布里渊散射之间关系的研究,2.25万,2010/4-2011/12
16. 教育部协同育人项目“新工科背景下地方高校国家一流本科专业建设研究 ”2021-2022
17、 光电教指委教育教学热点难点问题研究项目“地方高校“电路分析”课程多样化教学方式的探索”2021-2022
近几年发表论文情况;
1、 Yi Z , Liu J ,
Liu B , et al. Optical microfiber sensor for detection of Ni2+ ions
based on ion imprinting technology[J]. Analyst, 2022, 147
2、hua yang(学生),Liu J , liu B Luo C,Zhen Yi,Ma lichun,Wanshengpeng,Andrew
Pike,Fuyingqing,Wuqiang He xingdao Investigation of Relative Humidity Sensing using
Tapered No-core Fiber Coated with Graphene Oxide Film[J].IEEE Access DOI 10.1109/ACCESS.2020.3041507
3、Liu J , Luo C , Yang H , et al. Mach-Zehnder Interferometer for High Temperature (1000 °C) Sensing Based on a Few-Mode Fiber[J]. Photonic Sensors, 2020(17).
4、 Liu J , Liang H Q , Liu B , et al. Abnormal sensing properties of
surface plasmon resonance sensor based on photonic crystal fibers[J]. Optical
Fiber Technology, 2019, 48:248-252.
5、 胡金凤(学生), 刘娟, 刘彬,等. 基于双短腔耦合系统等离激元诱导吸收效应及多开关功能应用[J]. 激光与光电子学进展, 2018, 55(010):306-313.
6、 Hu J F(学生) , Liu
J , Liu B , et al. Plasmon-induced absorption and its applications for fast
light and sensing based on double-stub resonators[J]. Optik, 2018, 159:254–260.
7、.Juan Liu, Jiulin Shi, Xingdao He, Shujing li , Xuegang Chen , Dahe Liu , Comparison of three technique of Brillouin lidar for remote sensing of the ocean optical communication 0030-4018/& 2015 /
8. Yun-Cheng Liao, Zhi-Qiang Mao, Bin Liu*, Ling Chen, Juan Liu, Sheng-Peng Wan, Xing-Dao He and Qiang Wu, “Ultrasensitive Microfiber Refractive Index Sensor Based on Mach-Zehnder Interference of Core Offset Structure,” 2019 18th International Conference on Optical Communications and Networks (ICOCN), Huangshan, China, 2019, pp. 1-3
9. Rahul Kumar#, Yuankui Leng#,
Bin Liu#, Jun Zhou, Liyang Shao, Jinhui Yuan, Xinyu Fang, Shengpeng Wan, Tao
Wu, Juan Liu, Richard Binns, Yong
Qing Fu, Wai Pang Ng, Gerald Farrell, Yuliya Semenova, Hengyi Xu, Yonghua
Xiong, Xingdao He and Qiang Wu*, “Ultrasensitive biosensor based on magnetic
microspheres enhanced microfiber interferometer,” Biosensors and
Bioelectronics, 145: 111563 (2019). (SCI一区,影响因子9.516)
10.
Ping Zhang, Bin Liu*, Juan Liu, Cheng-Feng Xie, Sheng-Peng
Wan, Xing-Dao He, Xinpu Zhang and Qiang Wu “Investigation of a Side-polished
Fiber MZI and Its Sensing Performance,” in IEEE Sensors Journal, (2020). (接收,DOI: 10.1109/JSEN.2020.2972929)
11. Wu Zheyu, Liu Bin*, Zhu
Jiangfeng, Liu Juan, Wang Shengpeng,
Wu Tao and Sun Jinghua, “Asymmetrical tapered SMS fiber coupler for
simultaneous measurement of temperature and RI and its application for
bio-sensing,” Chinese Optics Letters, 18(7): 07 (2020).
12.
Wu, Z.#; Liu, B.#; Zhu, J.; Liu, J.; Wan, S.; Wu, T.; Sun, J.
“Ultrahigh Resolution Thickness Measurement Technique Based on a Hollow Core
Optical Fiber Structure,” Sensors, 20(7) 2035 (2020).
13. Ling Chen, Bin Liu*, Juan Liu, Sheng-Peng Wan, Tao Wu; Jinhui Yuan*, Xian Zhou, Keping Long, Liyang Shao, Yong Qing Fu, and Qiang Wu*, “Novel Microfiber Sensor and Its Biosensing Application for Detection of hCG Based on a Singlemode-Tapered Hollow Core-Singlemode Fiber Structure,” IEEE Sensors Journal, 2020. (接收,DOI: 10.1109/JSEN.2020.2986327)
14.
Bin Liu*, Yun-Cheng Liao,
Jin-Feng Hu, Juan Liu, Xing-Dao He and Zhong-Ping Chen,
“Plasmon-induced reflection and its application for all-optical diode based on
paralleled double-stub resonators,” Applied Physics Express 12, 032011 (2019).
15.
Yun-Cheng Liao, Bin Liu*, Juan Liu, Sheng-Peng Wan, Xing-Dao He, Jinhui Yuan, Xinyu Fan and Qiang Wu, “High
Temperature (Up to 950 °C) Sensor Based on Micro Taper In-Line Fiber
Mach–Zehnder Interferometer,” Applied Sciences, 9: 2394 (2019).
16.
梁红勤, 刘彬*, 刘娟, et al. “基于D型光纤探针的高灵敏折射率传感器,” 传感技术学报, 32(7): 986-990 (2019).
17.
Ling Chen, Bin Liu*,
Yun-Cheng Liao, Juan Liu, Yuan-Kui
Leng, Sheng-Peng Wan, Xing-Dao He, Jinhui Yuan, Nicole Pamme and Qiang Wu,
“High sensitivity biosensor for Staphylococcus Aureus detection based on
tapered a singlemode-no core-singlemode fiber structure,” 2019 18th
International Conference on Optical Communications and Networks (ICOCN),
Huangshan, China, 2019, pp. 1-3.
授权发明专利: 一种利用固体激光放大器发生受激布里渊散射的方法 2013.01.09,中国,ZL201210020610.9