导航
个人简介
学习经历
工作经历
研究方向
主要论文
主要著作
承担课题
个人信息
姓名: 辛洪宝
部门: 纳米光子学研究院
直属机构: 纳米光子学研究院
性别: 男
--> 职务:
职称: 教授
学位: 博士
毕业院校: 中山大学
联系电话:
电子邮箱: hongbaoxin@jnu.edu.cn
办公地址: 广州
通讯地址: 广州市番禺区新造暨南大学南校区
邮编: 510000
传真:
荣誉奖励: 省级青年人才
联系方式
hongbaoxin@jnu.edu.cn
个人简介
辛洪宝,广东省杰出青年基金获得者,暨南大学纳米光子学研究院教授、博士生导师、纳米生物光子学实验室主任。先后于中山大学获学士和博士学位。之后在美国加州大学伯克利分校和新加坡国立大学从事科研工作,于2018年7月加入暨南大学纳米光子学研究院。一直从事微纳光操控和生物光子学的基础研究,近年来,以光操控为主线,开展了从锥形光纤光镊的发明、到单细胞精准操控及光力微组装与生物微马达的实现、再到大肠杆菌细胞导光特性的发现与生物光波导的构建、最后到活细胞内部光学探索与癌细胞靶向治疗的系统深入研究。与哈佛大学、加州大学伯克利分校、新加坡国立大学、韩国大学、北京大学、清华大学等科研机构建立了长期合作关系。在Nature Rev. Mater.、Nature Commun.、Adv. Mater.、Light: Sci. Appl.、Nano Lett.、Adv. Funct. Mater.、Small、Laser Photonics Rev.等国际学术期刊发表论文40余篇。研究成果被包括诺贝尔物理学奖得主,美国科学院院士、工程院院士,荷兰皇家艺术与科学院院士,澳大利亚科学院院士,加拿大工程院院士,中科院院士等在内的国内外专家在Nature、Nature Nanotechnol.、Nature Mater.、Nature Commun.、Science Adv.等期刊论文引用与正面评价。受Nature Protocols杂志主编邀请为其Protocol Exchange栏目撰写论文一篇,主编出版英文专著一部。申请国家发明专利5项,在国际学术会议做邀请报告10余次。获广东省自然科学一等奖(排名第2)、全球光电大会青年科学家奖、全国光学优秀博士学位论文奖、全国光学工程博士学科优秀博士学位论文提名奖、南粤科技创新优秀论文奖等。主持广东省杰出青年基金、国家自然科学基金-面上、国家自然科学基金-青年等5项科研项目。
本课题组招收博士后、专职科研人员、优秀博士生、硕士生、对科研感兴趣的本科生等,欢迎邮件联系与现场实验室参观。
学习经历
中山大学,物理科学与工程技术学院,博士 (直博)
中山大学,物理科学与工程技术学院,学士(逸仙班)
工作经历
暨南大学,纳米光子学研究院,教授,博士生导师、实验室主任
美国加州大学伯克利分校,访问科学家(Visiting Scientist)
新加坡国立大学,博士后研究员(Postdoctoral Fellow)
研究方向
1. 光捕获与光操控
2. 生物光子器件与生物传感及探测
3. 生物微马达与生物机器人
4. 细胞内部光学探索及癌症靶向治疗
主要论文
1. 封面故事
2. 发表论文
(注:?表示共同第一作者,*表示通讯作者)
(40) Honbao Xin*, Nan Zhao, Yunuo Wang, Xiaoting Zhao, Ting Pan, Yang Shi, and Baojun Li*. Optically controlled living micromotors for the manipulation and disruption of biological targets. Nano Letters 10.1021/acs.nanolett.0c02501(2020)
(39)Hongbao Xin?, Yuchao Li?, Yong-Chun Liu, Yao Zhang, Yun-Feng Xiao*, and Baojun Li*. Optical forces: from fundamental to biological applications.Advanced Materials32, ** (2020).
(38)Ting Pan?, Wen Fu?,Hongbao Xin?, Shengyong Geng, Zhibin Li, Haodong Cui, Paul K. Chu,WenhuaZhou*, and Xue-Feng Yu*. Calcium phosphate mineralized black phosphorous with enhanced functionality and anti-cancer bioactivity.Advanced Functional Materials30, ** (2020)
(37)Yang Shi, Li Liang, Yunfeng Zuo, Xiaoqiang Zhu, Yi Yang*,Hongbao Xin*, and Baojun Li. Amplitude holographic interference-based microfluidic colorimetry and the micrometer scale.J. Phys. Chem. Lett. 11, 4747(2020).(封面文章)
(36) Xiaoting Zhao?, Nan Zhao?, Yang Shi,Hongbao Xin*, and Baojun Li. Optical fiber tweezers: a versatile tool for optical trapping and manipulation.Micromachines11, 114 (2020).
(35)Hongbao Xin,Wen Jing Sim, Bumseok Namgung, Yeonho Choi, Baojun Li, and Luke P. Lee. Quantum biological tunnel junction for electron transfer imaging in live cells.Nature Communications10, 3245 (2019).
(34) Yuchao Li, Xiaoshuai Liu, Xiaohao Xu,Hongbao Xin, Yao Zhang*, and Baojun Li*. Red-blood-cell waveguides as a living biosensor and micromotor.Advanced Functional Materials29, ** (2019). (内封面文章)
(33)Hongbao Xin, and Baojun Li*. Fiber-based optical trapping and manipulation.Frontiers of Optoelectronics12, 97-110 (2019).
(32)Hongbao Xin,Bumseok Namgung, and Luke P. Lee*.Nanoplasmonic optical antennas for life sciences and medicine.Nature Reviews Materials3, 228 (2018).(封面文章)
(31) Yuchao Li,Hongbao Xin, Xiaohao Xu, Xiaoshuai Liu, and Baojun Li*. Fiber-optic trapping and manipulation at the nanoscale.Advanced Materials Letters9, 567 (2018).
(30)Hongbao Xin*, Baojun Li, and Luke P. Lee. Smart light touch and optical antennas: from optical manipulation to cellular exploration.Optoelectronic Devices and Integration VII10814, 10814D (2018).
(29) Yuchao Li,Hongbao Xin,Yao Zhang, Hongxiang Lei, Tianhang Zhang, Huapeng Ye, Juan Jose Saenz, Cheng-Wei Qiu*, and Baojun Li*. Living nanospear for near-field optical probing.ACS Nano12, 10703 (2018).(封面文章)
(28)Hongbao Xin, Yuchao Li, Dekang Xu, Yueli Zhang, Chia-Hung Chen, and Baojun Li. Single upconversion nanoparticle-bacterium cotrapping for single-bacterium labeling and analysis.Small13, ** (2017). (内封面文章)
(27) Yuchao Li,Hongbao Xin, Hongxiang Lei, Linlin Liu, Yanze Li, Yao Zhang*, and Baojun Li*. Manipulation and detection of single nanoparticles and biomolecules by a photonic nanojet.Light: Science & Applications5, e16176 (2016).
(26) Yuchao Li,Hongbao Xin, Xiaoshuai Liu, Yao Zhang, Hongxiang Lei*, and Baojun Li. Trapping and detection of nanoparticles and cells using a parallel photonic nanojet array.ACS Nano10, 5800 (2016).
(25)Hongbao Xin, Yuchao Li, and Baojun Li*. Controllable patterning of different cells via optical assembly of 1D periodic cell structures.Advanced Functional Materials25, 2816-2823 (2015). (内封面文章)
(24)Hongbao Xin, Yuchao Li, and Baojun Li*. Bacteria-based branched structures for bionanophotonics.Laser & Photonics Reviews9, 554-563 (2015) (内封面文章)
(23) Yuchao Li,Hongbao Xin, Xiaoshuai Liu, and Baojun Li*. Non-contact intracellular binding of chloroplasts in vivo.Scientific Reports5, 10925 (2015).
(22) Yuchao Li,Hongbao Xin, Chang Cheng, Yao Zhang*, and Baojun Li*. Optical separation and controllable delivery of cells from particle and cell mixture.Nanophotonics4, 353 (2015).
(21)Hongbao Xinand Baojun Li. Optical orientation and shift of a single multiwalled carbon nanotube.Light : Science & Applications3, e205 (2014).
(20)Hongbao Xin, Qingyuan Liu, and Baojun Li. Non-contact fiber-optical trapping of motile bacteria: dynamics observation and energy estimation.Scientific Reports4, 6576 (2014).
(19) Xiaohao Xu, Chang Cheng,Hongbao Xin, Hongxiang Lei, and Baojun Li*. Controllable orientation of single silver nanowire using two fiber probes.Scientific Reports4, 3989 (2014).
(18) Xiaoshuai Liu, Jianbin Huang,Hongbao Xin, Yao Zhang, Baojun Li*. Optically controlled circling of particles with a particle-decorated fiber probe.RSC Advances4, 7688 (2014).
(17)Hongbao Xin, Yayi Li, Xiaoshuai Liu, and Baojun Li*.Escherichia coli-based biophotonic waveguides.Nano Letters13, 3408-3413 (2013).
(16)Hongbao Xin, Rui Xu, and Baojun Li*. Optical formation and manipulation of particle and cell patterns using a tapered optical fiber.Laser & Photonics Reviews7, 801-809 (2013). (内封面文章)
(15)Hongbao Xin, Chang Cheng, and Baojun Li*. Trapping and delivery ofEscherichia coliin a microfluidic channel using anoptical nanofiber.Nanoscale5, 6720-6724 (2013).
(14) Rui Xu,Hongbao Xin, Baojun Li*. Photothermal formation of vortex flows by 1.55μm light.AIP Advances3, 052120 (2013).
(13) Rui Xu,Hongbao Xin, and Baojun Li*. Massive assembly and migration of nanoparticles by laser-induced vortex flows.Applied Physics Letters103, 014102 (2013).
(12)Hongbao Xin, Yao Zhang, Hongxiang Lei, Yayi Li, Huixian Zhang, and Baojun Li*. Optofluidic realization and retaining of cell-cell contact using an abrupt tapered optical fibre.Scientific Reports3, 1993 (2013).
(11)Hongbao Xin, Yayi Li, Lingshan Li, Rui Xu, and Baojun Li*. Optofluidic manipulation ofEscherichia coliin a microfluidic channel using an abrupt tapered optical fiber.Applied Physics Letters103, 033703 (2013).
(10)Hongbao Xin, Dinghua Bao, Fan Zhong, and Baojun Li*. Photophoretic separation of particles using two tapered optical fibers.Laser Physics Letters10, 036004 (2013).
(9) Lingshan Li,Hongbao Xin, Hongxiang Lei, and Baojun Li*. Optofluidic extraction of particles using a sub-microfiber.Applied Physics Letters101, 074103 (2012).
(8) Rui Xu,Hongbao Xin, Qiuguo Li, Xianguang Yang, Hao Chen, and Baojun Li*. Photothermal formation and targeted positioning of bubbles by a fiber taper.Applied Physics Letters101, 054103 (2012).
(7)Hongbao Xin, Rui Xu, and Baojun Li*. Optical manipulation of particles and cells using a tapered fibre probe.Protocol Exchange (Nature Publishing Group)DOI: 10.1038/protex.2012.053 (2012).
(6)Hongbao Xin, Rui Xu, and Baojun Li*. Optical trapping, driving, and arrangement of particles using a tapered fibre probe.Scientific Reports2, 818 (2012).
(5)Hongbao Xinand Baojun Li*. Multi-destination release of nanoparticles using an optical nanofiber assisted by a barrier.AIP Advances2, 012166 (2012).
(4) Baojun Li*,Hongbao Xin, Yao Zhang, Hongxiang Lei. Progress of optical trapping and manipulation.Acta Optica Sinica31, ** (2011).
(3)Hongbao Xin, Xingmin Li, and Baojun Li*. Massive photothermal trapping and migration of particles by a tapered optical fiber.Optics Express19, 17065-17074 (2011).
(2)Hongbao Xinand Baojun Li*. Targeted delivery and controllable release of nanoparticles using a defect-decorated optical nanofiber.Optics Express19, 13285-13290 (2011).
(1)Hongbao Xin, Hongxiang Lei, Yao Zhang, Xingmin Li, and Baojun Li*. Photothermal trapping of dielectric particles by optical fiber-ring.Optics Express19, 2711-2719 (2011).
主要著作
(1) Baojun Li and Hongbao Xin. Fiber-Based Optical Trapping and Manipulation. Nova Science Publishers, NY, USA, 2017 (ISBN 978-1-63485-998-1). (Monograph, Hardcover)
承担课题
1. 微纳光操控与功能生物光子器件,广东省杰出青年基金项目,2019/10-2023/10,100万,主持。
2.对细胞内部单细胞器的光学操控与功能调制,国家自然科学基金-面上项目,**,2020/01-2023/12,63万,主持。
3.基于生物细胞与光力控制的生物微马达研究,国家自然科学基金-青年项目,**,2020/01-2023/12,27万,主持。
4. 单细胞与线粒体精准光捕获、操控及功能调制研究,暨南大学中央高校基本科研业务费青年基金项目,**,2019/01-2021/12,15万,主持。
5. 微纳光操控与生物光子器件,广东省高水平大学建设人才引进配套项目,2018/07-2023/06,300万,主持。
发明专利
1. 基于锥形光纤的大规模光热颗粒聚集和迁移方法,CN4.7,申请时间:2018.09;
2. 基于骤变锥形光纤的在微流中捕获与操控单细菌的方法,CN9.8,申请时间:2018.10;
3. 基于生物细胞的光波导构建方法,CN8.X,申请时间:2018.10;
4. 基于光力组装周期细胞结构的方法,CN3.1,申请时间:2019. 08;
5. 基于生物透镜的细胞捕获和荧光增强的装置及其方法,CN2.3,申请时间:2018.11.
讲授课程
研究生专业英语
荣誉奖励
省级青年人才
社会职务
1. 光电材料器件网专家委员会理事
2. 国际先进材料协会(IAAM)会员
3. 美国化学学会会员
4. 中国光学学会高级会员
5. 中国光学工程学会会员