Dr JIN Yuankai 靳袁凱
Research Assistant Professor
Area of Specialization: Nature-inspired interfaces, Fluidic manipulation, Interfacial electrostatics, Icing control
- FG626
- 2766-7814
- yuankai.jin@polyu.edu.hk
Biography
Short Description
Selected Publications
- Jin, Y., Yang, S., Sun, M., Gao, S., Cheng, Y., Wu, C., Xu, Z., Guo, Y., Xu, W., Gao. X., Wang, S., Huang, B., Wang, Z. (2024). How liquids charge the superhydrophobic surfaces. Nat. Commun., 15, 4762
- Jin, Y. #, Xu, W. #, Zhang, H., Li, R., Sun, J., Yang, S. Liu, M., Mao, H., Wang, Z. (2022). Electrostatic tweezer for droplet manipulation. Proc. Natl. Acad. Sci. U.S.A., 119, e2105459119.
- Zhang, H. #, Zhang, W. #, Jin, Y. #, Wu, C. #, Xu, Z., Yang, S., Gao, S., Liu, F., Xu, W., Wang, S., Yao, H., Wang, Z. (2024). Freezing droplet ejection by spring-like elastic pillars. Nat. Chem. Eng., 1-9.
- Xu, W.#, Jin, Y. #, Li, W., Song, Y., Gao, S., Zhang, B., Wang, L., Cui, M., Yan, X., and Wang, Z. (2022). Triboelectric wetting for continuous droplet transport. Sci. Adv.,8, eade2085.
- Jin, Y., Liu, X., Xu, W., Sun, P., Huang, S., Yang, S., Yang, X., Wang, Q., LAM. R., Wang, Z. (2023). Charge-powered electrotaxis for versatile droplet manipulation. ACS Nano, 17, 10713-10720.
- Jin, Y., Xu, W., Zhang, H., Zheng, H., Cheng, Y., Yan, X., Gao, S., Wang, D., Zi, Y., Zhou, F., Wang Z. (2021). Complete prevention of contact electrification by molecular engineering. Matter. 4, 290-301.
- Jin, Y., Wu, C., Sun, P., Wang, M., Cui M., Zhang C., and Wang, Z. (2022). Electrification of water: from basics to applications. Droplet, 1, 92-109.
- Jin, Y.#, Wu, C.#, Yang, Y., Wu, J., He, Z., and Wang, J. (2020). Inhibiting condensation freezing on patterned polyelectrolyte coatings. ACS Nano. 14, 5000-5007.
- Jin, Y., He, Z., Guo, Q., and Wang, J. (2017). Control of ice propagation by using polyelectrolyte multilayer coatings. Angew. Chem. Int. Ed. 56, 11436-11439.
- Wang, W.#, Jin, Y.#, Huang, Y., Zhao, Z., Li, M., Mao, H., Li, R., Xiong, J. (2024). A self-driven multifunctional microfluidic sweat analysis system for efficient sweat collection and real-time monitoring. Sensor Actuat. B-chem., 414, 135920.
- Sun, P.#, Jin, Y.#, Yin, Y., Wu, C., Song, C., Feng, Y., Zhou, P., Qin, X., Niu, Y., Liu, Q., Wang, Z., Hao, X. (2024). Achieving extreme pressure resistance to liquids on a super-omniphobic surface with armored reentrants. Small Methods, 8, 2201602.
- Zhang, W.#, Jin, Y.#, Yang, S., Zhang, H., and Wang, Z. (2022). Bio-inspired topological surfaces for mitigating water, thermal and energy crises. Acc. Mater. Res., 3, 199-212.
- Qin, S. #, Jin, Y. #, Yin, F., Wang Z., and Bai, G. (2022). Can solid surface energy be a predictor of ice nucleation ability? Appl. Surf. Sci., 602, 154193