创造、创新、创业

Creation, innovation and Entrepreneurship

正高级专业技术职称

侯佑民

分类:院内新闻 作者: 来源: 时间:2021-03-06 访问量:

一、个人基本情况

姓名:侯佑民

学历:博士

性别:男

职称:教授

电子邮件:hou.whu@qq.com

二、学习与工作经历

教育经历

2015年,香港科技大学,机械工程系,博士

2011年,武汉大学,热能工程,硕士

2007年,武汉大学,热能与动力工程,学士

研究工作经历

2021-至今, 武汉大学,beat365中文官方网站,教授

2018-2021,德国马克斯∙普朗克高分子研究所,洪堡学者、客座研究员

2017-2018,香港科技大学霍英东研究院,研究助理教授

2015-2016,香港科技大学机械工程学系,博士后研究员

三、主要研究方向

/纳米结构超润湿功能材料

界面传热传质机理及应用

汽轮机内两相流动与除湿

海水淡化与资源回收

综合能源管理及利用

四、学术获奖

(1) 德国 洪堡学者 Humboldt Research Fellowship for Postdoctoral Researchers

(2) 欧盟 玛丽居里学者 Marie Skłodowska-Curie Fellow

(3) 国家海外高层次青年项目

五、代表性论著 (#为共同一作,*为通讯作者)

专著

  • Hou Y.*, Butt H.J, Kappl M. (2020): Water and Ice Nucleation on Solid Surfaces, Ice Adhesion: Mechanism, Measurement, and Mitigation. John Wiley & Sons, ISBN: 978-1-119-64037-0.

  • Hou Y.*, Wang Z., Yao S. (2016): Biomimetic Surfaces for Enhanced Dropwise Condensation Heat Transfer, Bio-Inspired Surfaces and Applications. World Scientific, ISBN: 978-981-4704-48-9.

期刊论文

  • Hou Y., Shang Y., Yu M., Feng C., Yu H., Yao S.* (2018): Tunable Water Harvesting Surfaces Consisting of Biphilic Nanoscale Topography, ACS nano 12 (11), 11022-11030.

  • Hou Y., Yu M., Shang Y., Zhou P., Song R., Xu X., Chen X., Wang Z., Yao S.* (2018): Suppressing Ice Nucleation of Supercooled Condensate with Biphilic Topography. Physic Review Letters 120 (7), 075902.

  • Shang Y., # Hou Y.,# Yu M., Yao S.* (2018): Modeling and Optimization of Condensation Heat Transfer at Biphilic Interface. International Journal of Heat and Mass Transfer 122, 117-127.

  • Yu M., # Hou Y.,# Song R., Xu X., Yao S.* (2018): Tunable Confinement for Bridging Single-Cell Manipulation and Single-Molecule DNA Linearization. Small 14, 1800229.

  • Xu X., Yuan H., Song R., Yu M., Chung C., Hou Y., Shang Y., Zhou H., Yao S.* (2018): High Aspect Ratio Induced Spontaneous Generation of Monodisperse Picolitre Droplets for Digital PCR. Biomicrofluidics 12 (1), 014103.

  • Song R., Peng C., Xu X., Wang J., Yu M., Hou Y., Zou R.,* Yao S.* (2018): Controllable Formation of Monodisperse Polymer Microbubbles as Ultrasound Contrast Agents. ACS applied materials & interfaces 10 (17), 14312-14320.

  • Xu X., Song R., He M., Peng C., Yu M., Hou Y., Qiu H., Zou R.,* Yao S.* (2017): Microfluidic Production of Nanoscale Perfluorocarbon Droplets as Liquid Contrast Agents for Ultrasound Imaging, Lab on a Chip 17 (20), 3504-3513.

  • Li J., Hou Y., Liu Y., Hao C., Li M., Chaudhury MK., Yao S.,* Wang Z.* (2016): Directional Transport of High-temperature Janus Droplets Mediated by Structural Topography. Nature Physics,12, 606–612.

  • Hou Y., Yu M., Chen X., Wang Z., Yao S.* (2015): Filmwise-to-Dropwise Transition Enabled by Patterned High Wetting Contrast. Journal of Heat Transfer 137(8), 080907.

  • Shen Y., Hou Y., Yao S., Huang P., Yobas L.* (2015): In Vitro Epithelial Organoid Generation Induced by Substrate Nanotopography. Scientific Reports 5, 9293

  • Hou Y., Yu M., Chen X., Wang Z.,* Yao S.* (2015): Recurrent Filmwise and Dropwise Condensation on a Beetle Mimetic Surface. ACS Nano 9, 71-81. (web of science高被引论文)

  • Yu M., Hou Y., Zhou H., Yao S.* (2015): An On-Demand Nanofluidic Concentrator. Lab on a Chip, 15, 1524-1532.

六、科研项目

(1)  国家海外高层次青年项目科研启动经费;

(2)  欧盟“地平线2020”科研基金项目 (基金号:895899);

(3)  广州市对外科技合作计划 (基金号:201907010036).