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个人简介

工作经历 2019-至今 哈尔滨工业大学(深圳) 助理教授 2018-2019 香港城市大学 博士后 2016-2018 弗吉尼亚理工 博士后 教育经历 2011-2016 香港城市大学 博士 2007-2011 山东大学 学士 科研项目 国家自然科学基金面上项目 (主持) 深圳市稳定支持面上项目 (主持) 深圳市基础研究面上项目 (主持) 国家自然科学基金青年基金项目 (主持) 深圳市海外高层次人才科研启动项目(主持) 哈尔滨工业大学(深圳)教师科研启动项目(主持)

研究领域

仿生机械界面工程 Nature-inspired Interfacial Engineering 微纳制造 Micro- and Nano manufacturing 流体输运 Fluid Transport 相变传热 Phase Change Heat Transfer

近期论文

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Y. Dai, M. Li, B. Ji, X. Wang, S. Yang, P. Yu, S. Wang#, C. Hao# & Z. Wang#. Liquid metal droplets bouncing higher on thicker water layer. Nature Communications 14, 3532 (2023) (Featured in Editors' Highlights) R. Tao, W. Fang, J. Wu, B. Dou, W. Xu, Z. Zheng, B. Li, Z. Wang#, X. Feng# & C. Hao#. Rotating surfaces promote the shedding of droplets. Research 6, 0023 (2023). Tao, R., Liang, G., Dou, B., Wu, J., Li, B., and Hao, C.# Oblique pancake bouncing. Cell Reports Physical Science 3, 100721 (2022). (Featured in 2022 Editors Choice) Wang, Z., Tao, R., Wu, J., Li, B., and Hao, C.# Impingement-assisted self-assembly of ferrofluid droplets under magnetic field. Applied Physics Letters 119, 041601 (2021). B. Dou, R. Tao, Z. Wang, B. Li & C. Hao#. Recent progress in small-scale magnetic controlled bioinspired robots based on multiphase interfaces. Surface Technology 50, 51-56 (2021) Li, J., Zhou, X., Zhang, Y., Hao, C., Zhao, F., Li, M., Tang, H., Ye, W., and Wang, Z. Rectification of mobile Leidenfrost droplets by planar ratchets. Small 16, 1901751 (2020). Chu, F., Luo, J., Hao, C., Zhang, J., Wu, X., and Wen, D. Directional transportation of impacting droplets on wettability-controlled surfaces. Langmuir 36, 5855-5862 (2020). Yan, X., Jin, Y., Chen, X., Zhang, C., Hao, C., and Wang, Z. Nature-inspired surface topography: design and function. Science China Physics, Mechanics & Astronomy 63, 224601 (2019). Xu, W.*, Zhou, X.*, Hao, C.*, Zheng, H., Liu, Y., Yan, X., Yang, Z., Leung, M., Zeng, X.C., Xu, R.X., and Wang, Z. SLIPS-TENG: Robust triboelectric nanogenerator with optical and charge transparency using a slippery interface. National Science Review 6, 540-550 (2019). (Featured in NSR Research Highlights) Xiang, C., Liu, C., Hao, C., Wang, Z., Che, L., and Zhou, X. A self-powered acceleration sensor with flexible materials based on triboelectric effect. Nano Energy 31, 469-477 (2017). Wong, W.S.Y., Liu, G., Nasiri, N., Hao, C., Wang, Z., and Tricoli, A. Omnidirectional self-assembly of transparent superoleophobic nanotextures. ACS Nano 11, 587-596 (2017). Li, J., Hou, Y., Liu, Y., Hao, C., Li, M., Chaudhury, M.K., Yao, S., and Wang, Z. Directional transport of high-temperature Janus droplets mediated by structural topography. Nature Physics12, 606-612 (2016). (ESI Highly Cited Papers) Hao, C., Zhou, Y., Zhou, X., Che, L., Chu, B., and Wang, Z. Dynamic control of droplet jumping by tailoring nanoparticle concentrations. Applied Physics Letters 109, (2016). Hao, C., Liu, Y., Chen, X., Li, J., Zhao, Y., Zhang, M., and Wang, Z. Bioinspired interfacial materials with enhanced drop mobility: From fundamentals to multifunctional applications. Small 12, 1825-1839 (2016). Liu, Y., Whyman, G., Bormashenko, E., Hao, C., and Wang, Z. Controlling drop bouncing using surfaces with gradient features. Applied Physics Letters 107, 051604 (2015). Huang, Y., Hu, H., Huang, Y., Zhu, M., Meng, W., Liu, C., Pei, Z., Hao, C., Wang, Z., and Zhi, C. From industrially weavable and knittable highly conductive yarns to large wearable energy storage textiles. ACS Nano 9, 4766-4775 (2015). (ESI Highly Cited Papers) Hao, C., Li, J., Liu, Y., Zhou, X., Liu, Y., Liu, R., Che, L., Zhou, W., Sun, D., Li, L., et al. Superhydrophobic-like tunable droplet bouncing on slippery liquid interfaces. Nature Communications 6, 7986 (2015). (ESI Highly Cited Papers) Hao, C., Liu, Y., Chen, X., He, Y., Li, Q., Li, K.Y., and Wang, Z. Electrowetting on liquid-infused film (EWOLF): Complete reversibility and controlled droplet oscillation suppression for fast optical imaging. Scientific Reports 4, 6846 (2014). Huang, X., Hui, W., Hao, C., Yue, W., Yang, M., Cui, Y., and Wang, Z. On-site formation of emulsions by controlled air plugs. Small 10, 758-765 (2013). Rykaczewski, K., Osborn, W.A., Chinn, J., Walker, M.L., Scott, J.H.J., Jones, W., Hao, C., Yao, S., and Wang, Z. How nanorough is rough enough to make a surface superhydrophobic during water condensation? Soft Matter 8, 8786-8794 (2012). Chen, X., Ma, R., Li, J., Hao, C., Guo, W., Luk, B.L., Li, S.C., Yao, S., and Wang, Z. Evaporation of droplets on superhydrophobic surfaces: surface roughness and small droplet size effects. Physical Review Letters 109, 116101 (2012). Zhou, L., Lv, Z., Song, H., and Hao, C. (2011). Accelerated belief propagation for hardware implementation. 26-28 July 2011. pp. 128-131.

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