教育背景
                    2014/09-2019/09      斯坦福大学                  博 士
 
2012/09-2014/05      威斯康星大学麦迪逊分校      硕 士
 
2008/09-2012/07      北京理工大学                本 科        
                    
										
					                    
                    
工作经历
                     2021/11-现在		  北京理工大学			                       准聘教授
2019/09–2021/09    斯坦福大学高温气体动力学实验室               博士后 
2014/05-2014/09    美国Sandia国家实验室                         实习研究员
                    
										
					                    
                    
研究成果
                     邵建锟,博士生导师。曾获北京理工大学第五届特立(青年)学者。主要研究方向为激光诊断技术和高温高压化学反应动力学等。在Proceeding of the Combustion Institute,Combustion and Flame, Journal of Physical Chemistry A系列刊物等燃烧与爆炸主流国际期刊发表论文30余篇。
1. 代表性期刊论文:
[1]	Shao, J., Choudhary, R., Davidson, D. F., Hanson, R. K., Barak, S., & Vasu, S. (2019). Ignition delay times of methane and hydrogen highly diluted in carbon dioxide at high pressures up to 300 atm. Proceedings of the combustion institute, 37(4), 4555-4562.
[2]	Shao, J., Zhu, Y., Wang, S., Davidson, D. F., & Hanson, R. K. (2018). A shock tube study of jet fuel pyrolysis and ignition at elevated pressures and temperatures. Fuel, 226, 338-344.
[3]	Shao, J., Choudhary, R., Susa, A., Davidson, D. F., & Hanson, R. K. (2019). Shock tube study of the rate constants for H+ O2+ M→ HO2+ M (M= Ar, H2O, CO2, N2) at elevated pressures. Proceedings of the Combustion Institute, 37(1), 145-152.
[4]	Choudhary, R., Girard, J. J., Peng, Y., Shao, J.*, Davidson, D. F., & Hanson, R. K. (2019). Measurement of the reaction rate of H+ O2+ M→ HO2+ M, for M= Ar, N2, CO2, at high temperature with a sensitive OH absorption diagnostic. Combustion and Flame, 203, 265-278. 
[5]	Shao, J., Wei, W., Choudhary, R., Davidson, D. F., & Hanson, R. K. (2019). Shock tube measurement of the CH3+ C2H6→ CH4+ C2H5 rate constant. The Journal of Physical Chemistry A, 123(42), 9096-9101. 
2. 代表性专著:
[1] J. W. Park; C. Xu; Y. Gao; T. F. Lu; J. K. Shao; N. H. Pinkowski; S. Wang; Y. Wang; Y. Cao; R. K. Hanson; D. F. Davidson; M. B. Colket ; Chemical Kinetics, 2021 The American Institute of Aeronautics and Astronautics, Inc. All rights reserved., 2021
                    
                    					
										
										
					
                    
                    
研究方向
                    激光诊断技术与化学反应动力学