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郝崇磊
2023-05-10 20:08
  • 郝崇磊
  • 郝崇磊 - 助理教授-哈尔滨工业大学(深圳)-机电工程与自动化学院-个人资料

近期热点

资料介绍

个人简历


郝崇磊,2011年毕业于山东大学,获电子工程学士学位。2016年在香港城市大学机械工程系取得博士学位。2016-2018年和2018-2019年先后分别在美国弗吉尼亚理工大学机械工程系和香港城市大学机械工程系从事博士后研究。2019年加入哈尔滨工业大学(深圳)任助理教授。主要从事仿生机械表/界面机理及其应用研究,先后在Nature Communications 《自然-通讯》, National Science Review 《国家科学评论》, Nature Physics 《自然-物理》, Small等国际知名期刊上发表多篇论文, 其中ESI高被引论文3篇。截止目前Google Scholar 总引用达1300余次,H因子12,其中有些工作已经被Nature、Science及其子刊正面引用了总计21次。曾多次受邀在国际学术会议做大会报告。
欢迎有机械工程、工程热物理、流体力学、化学工程、材料加工等工程学科背景及兴趣同学报考研究生或从事博士后。博士后招收参照深圳市博士后相关政策,相关支持条件非常优厚。岗位待遇:
1.年总收入可达32~38万元(含深圳市每年18万元、2年共计36万免税的补贴、学校基本工资6800元/月、合作导师发放的科研补贴等);
2.按规定缴纳五险一金;
3.可自愿选择落户深圳市,配偶及未成年子女可办理随迁入户。博士后子女入托、入学等按深圳市相关条例执行;
4.住房:以远低于市场的价格租住深圳市人才公寓,或享受深圳市政府租房补贴。
5. 博士后出站留深工作可以享受深圳市政府30万元(免税)科研资助;符合深圳市高层次人才认定的,可申请和享受深圳市提供的住房补贴160-300万元(免税)。
6. 符合广东省\

研究领域


仿生机械
微纳智能制造
微纳机器人
机械表界面行为与调控""

近期论文


Yan, X., Jin, Y., Chen, X., Zhang, C., Hao, C. & Wang, Z. Nature-inspired surface topography: Design and function. Science China-Physics Mechanics & Astronomy 63 224601, (2020).
Li, J., Zhou, X., Zhang, Y., Hao, C., Zhao, F., Li, M., Tang, H., Ye, W. & Wang, Z. Rectification of mobile leidenfrost droplets by planar ratchets. Small 16 1901751, (2020).
Chu, F., Luo, J., Hao, C., Zhang, J., Wu, X. & Wen, D. Directional transportation of impacting droplets on wettability-controlled surfaces. Langmuir 36, 5855-5862, (2020).
Xu, W.#, Zhou, X.#, Hao, C.#, Zheng, H., Liu, Y., Yan, X., Yang, Z., Leung, M., Zeng, X. C., Xu, R. X. & Wang, Z. SLIPS-TENG: Robust triboelectric nanogenerator with optical and charge transparency using a slippery interface. National Science Review 6, 540-550, (2019).
Xiang, C., Liu, C., Hao, C., Wang, Z., Che, L. & 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. & 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. & Wang, Z. Directional transport of high-temperature janus droplets mediated by structural topography. Nature Physics 12, 606-612, (2016).
Hao, C., Zhou, Y., Zhou, X., Che, L., Chu, B. & Wang, Z. Dynamic control of droplet jumping by tailoring nanoparticle concentrations. Applied Physics Letters 109 021601, (2016).
Hao, C., Liu, Y., Chen, X., Li, J., Zhang, M., Zhao, Y. & 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. & 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. & Zhi, C. From industrially weavable and knittable highly conductive yarns to large wearable energy storage textiles. ACS Nano 9, 4766-4775, (2015).
Hao, C., Li, J., Liu, Y., Zhou, X., Liu, Y., Liu, R., Che, L., Zhou, W., Sun, D., Li, L., Xu, L. & Wang, Z. Superhydrophobic-like tunable droplet bouncing on slippery liquid interfaces. Nature Communications 6 7986, (2015).
Huang, X., Hui, W., Hao, C., Yue, W., Yang, M., Cui, Y. & Wang, Z. On-site formation of emulsions by controlled air plugs. Small 10, 758-765, (2014).
Hao, C., Liu, Y., Chen, X., He, Y., Li, Q., Li, K. Y. & Wang, Z. Electrowetting on liquid-infused film (ewolf): Complete reversibility and controlled droplet oscillation suppression for fast optical imaging. Scientific Reports 4 6846, (2014).
Rykaczewski, K., Osborn, W. A., Chinn, J., Walker, M. L., Scott, J. H. J., Jones, W., Hao, C., Yao, S. & 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. & 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. & Hao, C. Accelerated belief propagation for hardware implementation. International Conference on Multimedia Technology. 128-131 (2011).
会议论文及发表演说
C. Hao & Z. Wang. Nature-inspired multi-legged soft robots that function in both wet and dry conditions. 4th International Conference on Soft Robotics Theory and Technology, Beijing, China, Nov. 17-18, 2018.
C. Hao & Z. Wang. Dynamic control of droplet bouncing by tailoring silica particle concentrations. 12th International Conference on Frontiers of Design and Manufacturing, Shenyang, China, Aug. 10-12, 2016.
C. Hao & Z. Wang. Superhydrophobic-like tunable droplet bouncing on slippery liquid interfaces. MRS Fall Meeting & Exhibit, Boston, Massachusetts, USA, Nov. 29-Dec. 4, 2015.
C. Hao & Z. Wang. Electrowetting on bio-inspired soft liquid-infused film (EWOLF): complete reversibility and controlled droplet oscillation suppression for fast optical imaging. MRS Spring Meeting & Exhibit, San Francisco, California, USA, Apr. 6-10, 2015.
C. Hao & Z. Wang. Electrowetting on liquid-infused film (EWOLF) with enhanced functionalities. 4th ASME Micro/Nanoscale Heat & Mass Transfer International Conference, Hong Kong, China, Dec. 11-14, 2013.
C. Hao, K. Y. Li & Z. Wang. Electrowetting on liquid-infused film (EWOLF): a new electrowetting paradigm with enhanced functionalities. 3rd International Conference on Optofluidics, Hong Kong, China, Aug. 15-17, 2013.
X. Huang, C. Hao & Z. Wang. Air bubble triggered droplet formation, trapping and droplet-droplet concentration gradient generation. HKUST International Conference on Biomedical Engineering, Hong Kong, China, Jan. 10-12, 2013.
C. Hao. Characterization of droplet impact dynamics on soft materials using X-Ray imaging. Argonne National Laboratory, Advanced Photon Source, Mar. 2018.
C. Hao. Fabrication of textures surface on soft materials. Oak Ridge National Laboratory, Center for Nanophase Materials Sciences (CNMS), Feb. 2018.
2016 Member of International Society of Bionic Engineering (ISBE)
2014 Member of Materials Research Society (MRS)

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