近几年的项目与论文如下: 1.***********预研项目,基于*********感知技术,2017/11-2020/11,150万,主持 2.横向项目(上海航天控制技术研究所),KH0330315050,液体透镜测试系统研制,2015/08-2017/06,56万,主持。 3.江苏省自然科学基金,BK20151508,基于石墨烯的柔性应力传感器的机理、制备及应用研究,2015/07-2018/6,10万,主持。 4.横向项目(上海新跃联汇电子科技有限公司),基于机器视觉的自动巡检技术研究,2017/06-2018/10,27万,主持。 5.横向项目(上海航天控制技术研究所) ,机械臂柔性触觉传感器加工与测试,2017/10-2018/12,16万,主持。 6.横向项目(北京航空航天大学) ,基于双目视觉障碍物探测,2018/01-2019/06,15万,主持。 7.横向项目(常州敏杰电器有限公司),KH0330315029,智能光源和控制系统的研究,2015/06-2017/05,15万,主持。 8.扬州市重点研发计划(产业前瞻与共性关键技术)项目(YZ2016012)基于石墨烯的柔性应力振动传感器, 2016.07-2018.06, 10万.第二单位负责人 9.南京大学固体微结构物理国家重点实验室开放课题,M29031,基于石墨烯的高敏及高频响柔性应力传感器,2016.01-2018.6,2万元,主持 10.国家自然科学基金青年项目,11304159,超薄类金刚石膜包裹金属纳米颗粒释放的表面等离激元电场增强TiO2光催化效应研究,2014.01-2016.12,30万元,排名第二 11.教育部博士点基金项目,20133223120006,超薄类金刚石膜包覆金属微纳结构的奇异的表面等离激元特性及其在TiO2光催化中应用的研究,2014.01-2016.12,4万,排名第二 1.R. Xu, H. Zhang, Y. Cai, J. Ruan, K. Qu, E. Liu, X. Ni, M. Lu, and X. Dong, 'Flexible and Wearable 3d Graphene Sensor with 141 Khz Frequency Signal Response Capability', Applied Physics Letters, 111 (2017), 103501. 2.Rongqing Xu, Di Wang, Hongchao Zhang, Na Xie, Shan Lu, and Ke Qu, 'Simultaneous Detection of Static and Dynamic Signals by a Flexible Sensor Based on 3d Graphene', Sensors, 17 (2017), 1069. 3.R. Q. Xu, Y. Q. Lu, C. H. Jiang, J. Chen, P. Mao, G. H. Gao, L. B. Zhang, and S. Wu, “Facile fabrication of three-dimensional graphene foam/poly(dimethyl siloxane) composites and their potential application as strain sensor,” ACS Appl. Mater. Interfaces 6, 13455 (2014). 4.J. Chen, P. Mao, R. Q. Xu, C. J. Tang, Y. J. Liu, Q. G. Wang, and L. B. Zhang, “Strategy for realizing magnetic field enhancement based on diffraction coupling of magnetic plasmon resonances in embedded metamaterials,” Opt. Express 23, 16238 (2015). 5.J. Chen, R. Q. Xu, P. Mao, Y. T. Zhang, Y. J. Liu, C. J. Tang, and J. Q. Liu, “Realization of Fanolike resonance due to diffraction coupling of localized surface plasmon resonances in embedded nanoantenna arrays,” Plasmonics 10, 341 (2015). 6.J. Chen, R. Q. Xu, J. Q. Liu, and X. B. Cai, “Fanolike resonance in light transmission through a silver film perforated with an array of SRR-shaped apertures,” Opt. Commun. 322, 175 (2014). 7.P. Mao, J. Chen, R. Q. Xu, G. Z. Xie, Y. J. Liu, G. H. Gao, and S. Wu, “Self-assembled silver nanoparticles: correlation between structural and surface plasmon resonance properties,” Appl. Phys. A. 117, 1067 (2014). 8.J. Chen, R. Q. Xu, Z. D. Yan, C. J. Tang, Z. Chen, and Z. L. Wang, “Preparation of metallic triangular nanoparticle array with controllable interparticle distance and its application in surface-enhanced Raman spectroscopy,” Opt. Commun. 307, 73 (2013). 9.J. Chen, R. Q. Xu, Z. Q. Liu, C. J. Tang, Z. Chen, and Z. L. Wang, “Fabrication and infrared-transmission properties of monolayer hexagonal-close-packed metallic nanoshells,” Opt. Commun. 297, 194 (2013).