1. Chu, Q., Shi, B.*, Liao, L.*, Zhou, Y., Luo, K.H., Wang, N. (2020): Size-derived reaction mechanism of core-shell aluminum nanoparticle. Appl. Phys. Lett. (117) 133902. (Featured Article)
2. Zou, X., Wang, N., Liao, L.*, Q. Chu, Shi, B.* (2020): Prediction of nano/micro aluminum particles ignition in oxygen atmosphere. Fuel (266) 116952.
3. Chu, Q., Shi, B.*, Liao, L.*, Zou, X., Luo, K.H., Wang, N.(2020): Reaction mechanism of aluminum nanoparticle: physicochemical reaction and heat/mass transfer, J. Phys. Chem. C (124) 3886-3894.
4. Ma, K., Yu, X., Zhao, X., Li, X., Li, S., Zhao, D., Shi, B.*(2020): Response of lean premixed swirl tubular flame to acoustic perturbations, Exp. Therm. Fluid Sci. (119) 110199.
5. Hu, J., Wang, K., Zou, X., Shi, B.* (2020): Effects of swirl on the heating process of a central gas stream in a tubular flame, Exp. Therm. Fluid Sci. (119) 110209.
6. Shi, B.*, Cao, Q., Xie, D., Peng, W., Wang, N. (2019): A novel combustion system for liquid fuel evaporating and burning. Proc. Combust. Inst. (37), 4329-4336.
7. Li, B., Shi, B.*, Chu, Q., Zhao, X., Li, J., Wang, N. (2019): Characteristics of the stoichiometric CH4/O2/CO2 flame up to the pure oxygen condition in a rapidly mixed tubular flame burner. Energy (168), 151-159.
8. Li, B., Shi, B.*, Zhao, X.,Ma, K., Xie, D., Zhao, D., Li, J. (2018): Oxy-fuel combustion of methane in a swirl tubular flame burner under various oxygen contents: operation limit and combustion instability. Exp. Therm. Fluid Sci. (90), 115-124.
9. Shi, B., Hu, J.*, Peng, H., Ishizuka, S. (2018): Effects of internal flue gas recirculation rate on the NOx emission in a methane/air premixed flame. Combust. Flame (188), 199-211.
10. Shi, B.*, Peng, W., Li, B., Hu, J., Wang, N., Ishizuka, S. (2017): CO2 diluted propane/oxygen combustion in a rapidly mixed tubular flame burner. Proc. Combust. Inst. (36) 4261-4268.