
国家级重大人才引进工程入选者、国家特聘专家,瑞湾科技(珠海)有限公司董事长,科技部“中国-葡萄牙文化遗产保护科学‘一带一路’联合实验室”客座教授
研究领域: 化学物理、材料分析、高端仪器与设备
邮箱:Rong.zhang@rytrum.com
教育背景
1985.6–1990.2 美国斯坦福大学,化学物理,博士,导师:R.N.Zare
1982.8–1985.4 中科院大连化物所,化学物理,硕士,导师:楼南泉
1978.3–1982.7 哈尔滨工程大学,数学/物理,双学士
社会阅历(工作经验)
1990–1992 客座研究员,美国,IBM 圣荷西实验室 (IBM Almaden Lab)
1992–1993 博士后,美国,加州斯坦福国际研究院(SRI)
1993–1994 博士后,美国,斯坦福大学
1994–1997 高级科学家,美国,赛默飞世尔仪器公司(Thermo-Fisher Scientific)
1997–2000 资深工程师,美国,科磊半导体设备公司(KLA-Tencor)
2000–2002 资深科学家,美国,Optimight Communication Inc.
2002–2009 资深研发经理,美国,华为技术美研所
2009–2013 副总裁,中国,益科博能源科技(上海)有限公司
2012年 入选中组部第8批国家“千人计划”特聘专家
2011~2014 总裁,中国,蓝瑚能源科技(上海)有限公司
2015~2017 执行副总裁/CTO/总经理,谱瑞科技(大连)有限公司
2017至今 董事长,瑞湾科技(珠海)有限公司
代表性论著
1. R. Zhang and D.R. Crosley, “Determination of electronic quenching rate from NO A 2+ v=0 state at the temperature range of 200 to 300 K with collision partner of NO, O2, CO2, NH3, H2S, and H2O,” J. Chem. Phys. 102, 7418 (1995). 25
2. L. Fang, R. Zhang, Evan R. Williams, and R.N. Zare, On-line Time-of-Flight Mass Spectrometric Analysis of Peptides Separated by Capillary Electrophoresis, Analytical Chemistry 66, 3696 - 3701 (1994). 101
3. P.B. Comita, E. Jay, R. Zhang, and W. Jacob, “Laser-induced coalescence of gold clusters in fluorocarbon composite thin film”, invited paper, Applied Surface Science, 80,196 (1994). 0
4. P. Comita, W. Jacob, E. Kay, and R. Zhang, “A New Technique for Laser-Induced Metallization: Laser Coalescence of Gold Clusters in Gold-Fluorocarbon Composite Film 0s,” Proceedings of the Society of Photo-Optical Instrumentation Engineers, 1804,154 (1993). 0
5. P.B. Comita, W. Jacob, E. Jay, and R. Zhang, Laser-Induced Coalescence of Gold Clusters in Gold Fluorocarbon Polymer Composite Films, Chapter 20 in Laser Chemistry of Organometallics, ed. J. Chaiken, ACS Symposium Series 530, pp. 279 (ACS, Washington, DC., 1993). 0
6. R. Zhang and R.L. Jackson, Buffer-Gas Quenching as a Dynamical Probe of Organometallic Photodissociation Processes, Chapter 10 in Laser Chemistry of Organometallics, ed. J. Chaiken, ACS Symposium Series 530, pp.122 (ACS, Washington, DC., 1993). 0
7. R. Zhang and P.B. Comita, Deposition of Platinum From Pt(PF3)4 on Atomically Clean Platinum Surfaces, Chem. Phys. Lett. 115, 142 (1992). 5
8. P. Comita, W. Jacob, E. Kay, and R. Zhang, “Laser-Induced Coalescence of Gold Clusters in Au-PPTFE Composite Films,” Proceedings of the Laser Advanced Materials Processing Conference, 2, 1215-1220 (1992). 0
9. P. Comita, W. Jacob, E. Kay, and R. Zhang, “Laser Drawn Gold Lines on Fluoropolymer Films,” Summary of research in Advanced Coatings and Surface Technology, Vo.l 5, 8 (1992). 0
10. H-G. Rubahn, W.J. van der Zande, R. Zhang, M.J. Bronikowski, and R.N. Zare, Fine-structure Population Distribution of O(3Pj) from the Reaction of H + O2 -> OH + O and the Photolysis of NO2 + h -> NO + O, Chem. Phys. Lett. 186, 154 (1991). 45
11. R. Zhang, W.J. van der Zande, M.J. Bronikowski, and R.N. Zare, Experimental Investigations of State to State Reaction Dynamics on O(3P) + HCl(v=2,J=1-9) System, J. Chem. Phys. 94, 2704 (1991). 70
12. W.J. van der Zande, R. Zhang, R.N. Zare, K.G. McKendrick, and J.J. Valentini, Superthermal Widths of the Collision Energy Distributions in Hot Atom Reactions, J. Phys. Chem. 95, 8205 (1991). 105
13. R. Huang, R. Zhang, and R.N. Zare, Nature of the red emission in the chemical oxygen iodine laser system, Chem. Phys. Lett. 170, 437 (1990). 15
14. W.J. van der Zande, R. Zhang and R.N. Zare, Collisional Energy Spread Caused by Thermal Motions of the Reagents, in Spectral Line Shapes, Vol. 6, 301, ed. L. Frommhold and J. W. Keto, (American Institute of Physics, New York, 1990).
15. K.G. McKendrick, D.J. Rakestraw, R. Zhang, and R.N. Zare, Effect of alignment in O(3P) + HCl (v=2, J) reaction, J. Chem. Soc. Faraday Trans. II, 85, 1255 (1989).
16. M.J. Bronikowski, R. Zhang, D.J. Rakestraw, and R.N. Zare, Reaction Dynamics of H + O2 at 1.6 eV Collision Energy, Chem. Phys. Lett. 156, 7 (1989). 59
17. K.G. McKendrick, D.J. Rakestraw, R. Zhang, and R.N. Zare, Dynamics of the Reaction O(3P) + HBr: Experimental Investigation and Theoretical Modeling, J. Phys. Chem. 92, 5530 (1988). 59
18. R. Zhang, D.J. Rakestraw, K.G. McKendrick, and R.N. Zare, Comparison of the Ca + HF(DF) and Sr + HF(DF) Reaction Dynamics, J. Chem. Phys. 89, 6283 (1988). 50
代表性专利
1)美国专利局批准的专利
1. United States Patent 7,542,685, “System and method for automatic chromatic dispersion compensation”
2. United States Patent 8,238,757, “Method and Apparatus for Generating Optical Duobinary Signals with Enhanced Receiver Sensitivity and Spectral Efficiency”
3. United States Patent 8,955,320, “METHODS AND APPARATUS FOR LATENT HEAT (PHASE CHANGE) THERMAL STORAGE AND ASSOCATED HEAT TRANSFER AND EXCHANGE”
4. United States Patent 9,091,469, “APPARATUS AND METHOD FOR VAPOR DRIVEN ABSORPTION HEAT PUMIPS AND ABSORPTION HEAT TRANSFORMER WITH APPLICATIONS”
5. United States Patent 9,820,032, “Speaker system for high fidelity reproduction of audio signals”
2)美国和国际专利申请
1. 20130240188,METHOD AND APPARATUS FOR A DELAYED AND PROLONGED AIR COOLING CONDENSATION SYSTEM
2. 20110120673, SYSTEMS AND METHODS OF THERMAL TRANSFER AND/OR STORAGE
3. 20110005516, SOLAR COLLECTOR
4. 20100242475, Systems and Methods of Thermal-Electric Power Generation Including Latent Heat Utilization Features
5. 20100206295,SYSTEMS AND METHODS OF SOLAR THERMAL CONCENTRATION FOR 2-DIMENSIONAL FOCUSING CONCENTRATORS INCLUDING FEATURES OF SEQUENTIAL HEATING, THERMAL LOSS REDUCTION, AND/OR ADJUSTMENT OF OPERATION OR OPERATING PARAMETERS
代表性项目
2021-今,冷阴极X-射线断层扫描设备的研制,5000万元
2017-今,便携式线性离子阱质谱分析仪的研发与制造,1000万元
2015-今, 真空紫外光电离离子迁移谱痕量探测技术及设备,3000万元
2010-2013,高温相变传热相变储热技术与设备,300万元
2009-2013,益科博海南三亚1兆瓦聚焦光热发电示范电站,5000万元
2002-2009,10G及40G超长距离大容量低成本光纤干线传输技术与设备,500万美元
1998-2000,大型超高分辨率电子显微镜半导体加工工艺过程监测设备,2000万美元
1995-1997,快速超高灵敏度超高分辨率串联型4极质谱仪,300万美元