代表性论文及著作
著作/教材:
1.冯妍卉, 贾力, 张欣欣, 彭晓峰, 改编. Heat Transfer: A Practical Approach(改编版)[M]. 北京: 高等教育出版社, 2007.
2.冯妍卉, 冯黛丽, 张欣欣. 介孔复合材料的相变及热输运特性[M]. 北京: 科学出版社, 2019.
3.冯妍卉, 豆瑞锋, 冯黛丽, 邱琳, 张欣欣, 改编. Heat and Mass Transfer: Fundamentals and Applications(改编版)[M]. 北京: 高等教育出版社, 2020.
4.Qiu, L., & Feng, Y. (2022). Micro and nano thermal transport: Characterization, measurement, and mechanism. Academic Press.
5.Qiu, L., & Feng, Y. (2024). Thermal engineering: Engineering thermodynamics and heat transfer. De Gruyter.
代表性论文:
1.Sun, F., Wu, Q., Fu, Y., Zheng, L., Zheng, K., Yang, M., & Feng, Y.* (2025). Improving interfacial thermal transport in silicon-reinforced epoxy resin composites with self-assembled monolayers. Journal of Colloid and Interface Science, 681, 392-403.
2.Zhang, H., Ding, J., Liu, H., Ding, T., & Feng, Y. (2025). Start-up investigation and heat transfer enhancement analysis of a loop thermosyphon with biomimetic honeycomb-channel evaporator. International Journal of Refrigeration, 169, 383-390.
3.Chu, F., Li, S., Zhao, C., Feng, Y.*, Lin, Y., Wu, X., ... & Miljkovic, N. (2024). Interfacial ice sprouting during salty water droplet freezing. Nature communications, 15(1), 2249.
4.Feng, D., Zhao, Z., Li, P., Li, Y., Zha, J., Hu, J., ... & Feng, Y.* (2024). Multifunctional performance of carbon nanotubes in thermal energy storage materials. Materials Today.
5.Du, Y., Zhou, C., Feng, Y.*, & Qiu, L. (2024). Flexible, multimodal device for measurement of body temperature, core temperature, thermal conductivity and water content. npj Flexible Electronics, 8(1), 85.
6.Li, P., Feng, D., Feng, Y.*, & Zhang, X. (2024). Converting bio-waste rice into ultralight hierarchical porous carbon to pack polyethylene glycol for multifunctional applications: Experiment and molecular dynamics simulations. Composites Part A: Applied Science and Manufacturing, 178, 107979.
7.Li, J., Feng, Y.*, Zhang, M., Sun, F., & Chu, F. (2024). Formation and effect of intermetallic compounds in the interface of copper/aluminum composites under rolling conditions. Journal of Materials Research and Technology, 28, 1734-1742.
8.Cui, S., Sun, F., Wang, D., Zhang, X., Zhang, H., & Feng, Y.* (2024). Enhancing interfacial heat conduction in diamond-reinforced copper composites with boron carbide interlayers for thermal management. Composites Part B: Engineering, 287, 111871.
9.Chu, F., Ni, Z., Wen, D., Feng, Y.*, Li, S., Jiang, L., & Dong, Z. (2022). Liquid film sculpture via droplet impacting on microstructured heterowettable surfaces. Advanced Functional Materials, 32(26), 2203222.
10.Shu, Y., Chu, F., Hu, Z., Gao, J., Wu, X., Dong, Z., & Feng, Y.* (2022). Superhydrophobic strategy for nature-inspired rotating microfliers: Enhancing spreading, reducing contact time, and weakening impact force of raindrops. ACS Applied Materials & Interfaces, 14(51), 57340-57349.
11.Feng, D. L., Zang, Y. Y., Li, P., Feng, Y. H.*, Yan, Y. Y., & Zhang, X. X. (2021). Polyethylene glycol phase change material embedded in a hierarchical porous carbon with superior thermal storage capacity and excellent stability. Composites Science and Technology, 210, 108832.
12.Feng, Y. H.*, Zhang, Z., Gao, J., Feng, G. P., Qiu, L., Feng, D. L., ... & Zhu, X. (2021). Research status of centrifugal granulation, physical heat recovery and resource utilization of blast furnace slags. Journal of Analytical and Applied Pyrolysis, 157, 105220.
13.Qiu, L., Zhu, N., Feng, Y.*, Michaelides, E. E., Żyła, G., Jing, D., ... & Mahian, O. (2020). A review of recent advances in thermophysical properties at the nanoscale: From solid state to colloids. Physics Reports, 843, 1-81.
14.Gao, J., Feng, Y.*, Feng, D., Zhang, Z., & Zhang, X. (2020). Solidification with crystallization behavior of molten blast furnace slag particle during the cooling process. International Journal of Heat and Mass Transfer, 146, 118888.
15.Qiu, L., Ouyang, Y., Feng, Y.*, Zhang, X., & Wang, X. (2020). In vivo skin thermophysical property testing technology using flexible thermosensor-based 3ω method. International Journal of Heat and Mass Transfer, 163, 120550.
16.Feng, Y.*, Gao, J., Feng, D., & Zhang, X. (2019). Modeling of the molten blast furnace slag particle deposition on the wall including phase change and heat transfer. Applied Energy, 248, 288-298.
17.Qiu, L., Zou, H., Wang, X., Feng, Y.*, Zhang, X., Zhao, J., ... & Li, Q. (2019). Enhancing the interfacial interaction of carbon nanotubes fibers by Au nanoparticles with improved performance of the electrical and thermal conductivity. Carbon, 141, 497-505.
18.Feng, Y. H.*, Zhang, Z., Qiu, L., & Zhang, X. X. (2019). Heat recovery process modelling of semi-molten blast furnace slag in a moving bed using XDEM. Energy, 186, 115876.
19.Feng, Y.*, Zou, H., Qiu, L., & Zhang, X. (2019). Size effect on the thermal conductivity of octadecanoic acid: A molecular dynamics study. Computational Materials Science, 158, 14-19.
20.Feng, Y.*, Wei, R., Huang, Z., Zhang, X., & Wang, G. (2018). Thermal properties of lauric acid filled in carbon nanotubes as shape-stabilized phase change materials. Physical Chemistry Chemical Physics, 20(11), 7772-7780.