论文著作:
[1] Z. Zhao, R. Wang, T. Li*, et al. Carbon-based phase change composites with directional high thermal conductivity for interface thermal management. Chemical Engineering Journal, 2024, 496, 154305.
[2] Y. Jing1, Z. Zhao1, Y. Yuan*; T. Li*, et al. Ultraflexible, cost-effective and scalable polymer-based phase change composites via chemical cross-linking for wearable thermal management. Nature Communications, 2023, 14(1), 8060.
[3] Z. Zhao, X. Huang*, H. Liu, et al. Combustion enhancement and soot reduction of kerosene-based fuel under engine-relevant conditions enabled by fuel reactivity modulation.Fuel, 2023, 338, 127340.
[4] Z. Zhao, X. Huang*, H. Liu, et al. Enhanced low-temperature stable combustion of hydrocarbon with suppressing the Leidenfrost effect.International Journal of Heat and Mass Transfer, 2022, 185: 122413.
[5] Z. Zhao, X. Huang*, H. Sheng, H. Liu. On promoted combustion stability of kerosene/ethanol blends at wide low temperatures: fuel reactivity improvement and Leidenfrost effect suppression. Fuel, 2022, 315, 123221.
[6] Z. Zhao, X, Huang*, H. Sheng, Z. Chen, H. Liu. Promoted stable combustion of alcohol-based fuel accompanied by inhibition of Leidenfrost effect in a wide temperature range. Energy, 2021, 234, 121248.
发明专利:
[1] 基于无莱顿效应的液态碳氢燃料低温稳定燃烧方法, CN202010342839.9.(授权)
[2] 一种用于液态燃料莱顿效应研究的单液滴悬挂系统, CN202210495531.7.(公开)
[3] 基于抑制负温度系数效应的醇基燃料宽温度范围稳定燃烧实现方法, CN202110249471.6.(公开)