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郭志光
2023-05-17 10:36
  • 郭志光
  • 郭志光 - 研究员-中国科学院兰州化学物理研究所-固体润滑国家重点实验室-个人资料

近期热点

资料介绍

个人简历


郭志光,男,湖北黄冈人,中国科学院兰州化学物理研究所固体润滑国家重点实验室研究员、博士生导师,课题组长,国际仿生工程学会Fellow,国家相关人才项目领军人才,科技部中青年科技创新领军人才,国家优秀青年科学基金获得者

研究领域


"""""课题组的研究将从理论和实验2个方面着手,在理论层面上,将深化表面结构特征对疏油性作用机制的认识,丰富超疏油结构设计理论和润湿性控制理论;在技术层面上,将开发高效、普适性强的多尺度微观结构设计与制备技术,推动具有稳定超双疏性能的材料在工程领域的应用

近期论文


Wenyu Penga, Xuelian Gou, Hongling Qin*, Meiyun Zhao, Xinze Zhao, Zhiguang Guo*. Robust Mg(OH)2/epoxy resin superhydrophobic coating applied to composite insulators. Applied Surface Science. 2019, 466, 126-132.\r
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Qi Li, Zhiguang Guo*. Lubricant-infused slippery surfaces: Facile fabrication, unique liquid repellence and antireflective properties. Journal of Colloid and Interface Science. 2019, 536, 507-515.\r
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Jing Fu, Fuchao Yang, Zhiguang Guo*. Facile fabrication of superhydrophobic filter paper with high water adhesion. Materials Letters, 2019, 236, 732-735.\r
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Lu Tie, Jing Lia*, Zhiguang Guo*, Yongmin Liang, Weimin Liu*. Anisotropic wetting properties of trapezoidal profile surfaces with hierarchical stripes. Colloids and Surfaces A. 2019, 562, 170-178.\r
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Yihan Sun, Zhiguang Guo*. Recent advances of bioinspired functional materials with specific wettability: from nature and beyond nature. Nanoscale Horiz. 2019, 4, 52-76.\r
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Jun Yang, Haojie Song*, Zhiguang Guo*. A study of synthesizing stable super-slip carbon nanotubes by grafting octadecylamine. Journal of Colloid and Interface Science. 2019, 540, 126-133.\r
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Zelinlan Wang, Xiaoyu Gao, Gang Wen, Pan Tian, Lieshuang Zhong, Zhiguang Guo*. Polysulfide microspheres with chemical modification for generation of interfaces with macroscopic colour variation and biomimetic superhydrophobicity. Nanoscale Adv. 2019, 1, 281-290.\r
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Pan Tian, Zhiguang Guo*. Biomimetic Janus Paper with Controllable Swelling for Shape Memory and Energy Conversion. Journal of Bionic Engineering. 2019, 16, 1-12.\r
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Zhiying Ren, Gang Wen, Zhiguang Guo*. Biomimetic high-intensity superhydrophobic metal rubber with anti-corrosion property for industrial oil–water separation. New J. Chem. 2019, 43, 1894-1899.\r
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Jiao Xu, Jingyan Nian*, Peng Wang*, Zhiguang Guo*, Weimin Liu. Elastic Lubricious Effect of Solidlike Boundary Films in Oil-Starvatio Lubrication. J. Phys. Chem. C. 2019, 123, 1677-1691.\r
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Fengyi Wang, Zhiguang Guo*. Facile synthesis of superhydrophobic three-metal-component layered double hydroxide films on aluminum foils for highly improve corrosion inhibition. New J. Chem. 2019, 43, 2289-2298.\r
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Xuelian Gou, Zhiguang Guo*. Superhydrophobic Plant Leaves: The Variation in Surface Morphologies and Wettability during the Vegetation Period. Langmuir. 2019, 35, 1047-1053.\r
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Gang Wena, JinXia Huang, ZhiGuang Guo*. Energy-effective superhydrophobic nanocoating based on recycled eggshell. Colloids and Surfaces A. 2019, 568, 20-28.\r
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Xin Zhanga Jing Zhao*, Jiliang Mo, Ruoyu Sun, Zhen Li, Zhiguang Guo. Fabrication of superhydrophobic aluminum surface by droplet etching and chemical modification. Colloids and Surfaces A. 2019, 567, 205-212.\r
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Lu Tie, Zhiguang Guo*, Yongmin Liang, Weimin Liu*. Water super-repellent behavior of semicircular micro/nanostructured surfaces. Nanoscale, 2019, 11, 3725-3732.\r
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Jing Feng, Zhiguang Guo*. Wettability of graphene: from influencing factors and reversible conversions to potential applications. Nanoscale Horiz. 2019, 4, 339-364.\r
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Lu Tie, Jing Li*, Zhiguang Guo*, Yongmin Liang, Weimin Liu*. Controllable preparation of multiple superantiwetting surfaces: From dual to quadruple superlyophobicity. Chemical Engineering Journal. 2019, 369, 463-469.\r
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Dejun Gao, Jian Cao*, Zhiguang Guo*. Underwater manipulation of oil droplets and ubbles on superhydrophobic surfaces via switchable adhesion. Chem. Commun. 2019, 55, 3394-3397.\r
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Zhiying Ren, Yu Yang, Youxi Lin*, Zhiguang Guo*. Tribological Properties of Molybdenum Disulfide and Helical Carbon Nanotube Modified Epoxy Resin. Materials. 2019, 12, 903-917.\r
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Lu Tie, jing Li*, Zhiguang Guo*, Yongmin Liang, Weimin Liu*. An all superantiwetting surface in water–oil–air systems. J. Mater. Chem. A. 2019, 7, 6957-6962.

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