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西北工业大学物理科学与技术学院导师教师师资介绍简介-李晓光

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基本信息 The basic information
李晓光

物理科学与技术学院


博士研究生毕业

理学博士


副教授




物理学-凝聚态物理,材料科学与工程-材料物理与化学


lixiaoguang@nwpu.edu.cn




教育经历 Education Experience

2008/09-2013/09,同济大学,物理科学与工程学院,凝聚态物理专业,博士,导师:沈军 教授
2010/11-2012/05,澳大利亚联邦科工组织,国家精密光学中心,联合培养博士生,导师:Bob Oreb 教授
2004/09-2008/06,同济大学,应用物理系,学士



工作经历 Work Experience

1.2015/12-至今,西北工业大学,物理科学与技术学院,副教授,博导
2.2013/10-2015/11,同济大学,材料科学与工程系,博士后,合作导师:吴广明 教授
3.2015/01-2015/07, 北京大学,力学与工程科学系,博士后(访问),合作导师:段慧玲 教授



教育教学 Education And Teaching
主讲课程:
大学物理实验公共课
玛丽女王学院大学物理实验(全英文)
晶体物理学(研究生课程)
2017年度优秀本科毕业论文指导教师
2018年度优秀本科毕业论文指导教师
2019年度优秀本科毕业论文指导教师
2020年度优秀本科毕业论文指导教师

在研究生培养方面,指导学生多次获得重要奖励或项目资助,包括研究生国家奖学金、陕西省研究生创新成果奖、研究生种子基金重点项目、国际会议优秀墙报奖等。
面向青少年教育方面,积极从事科普工作,以科教结合、生动讲解前沿科技为特色,多次到中小学、少科站等地进行科普讲座,曾被上海教育媒体《学生导报》报导。




招生信息 Admission Information
可招收专业:材料物理化学(硕士、博士)、凝聚态物理(硕士)、材料工程(硕士)
欢迎具有物理、化学、生物等专业背景的同学报考本组研究生、博士生。



荣誉获奖 Awards Information
2019年陕西省科学实验展演大赛一等奖(排名:1)
?2019年全国科学实验展演大赛二等奖(排名:1)
?2019年全国科学实验展演大赛最佳实验创意奖(排名:1)



科学研究 Scientific Research
近年来从事界面材料和非浸润体系研究,研究对象主要为液体弹珠、液体橡皮泥和超疏水表面,以物理、化学、材料、生物等学科的交叉研究为特色,发表论文40余篇,主持国家自然科学基金面上项目2项,青年项目1项。创立了单层纳米颗粒结构液体弹珠的制备方法,实现了液体形状的精确塑造,提出了液体橡皮泥的概念,阐明了液体弹珠有效表面张力问题,搭建了液体弹珠细胞培养器、液体橡皮泥气体传感器、液体橡皮泥蛋白分析平台等器件。部分工作被选为《Analytical Chemistry》、《Soft Matter》、《Advanced Materials Interfaces》《Journal of Materials Science》等期刊的封面故事,被Discovery探索频道、《New Scientist》杂志、国际工程学网站Advances in Engineering等著名科技媒体评论。
主要研究方向:
1.液体弹珠、液体橡皮泥等液滴体系的力学、热学、光学、电磁学等物理特性
2.基于液滴技术的化学合成、新能源、细胞培养、蛋白分离等交叉学科研究
3.超疏水表面的设计及应用
4.溶胶-凝胶镀膜技术及应用

承担的主要科研项目:
1. 国家自然科学基金面上项目,液体橡皮泥微容器的基本特性探索,2020.1-2023.12,主持
2. 国家自然科学基金面上项目,用于调控水滴形态和功能的弱结合力超疏水涂层研究,2017.1-2020.12,主持
3. 国家自然科学基金青年项目,水滴表面流动性的消除机理及其应用,2015.1-2017.12,主持
4. 上海市特殊人工微结构重点实验室开放课题,溶胶-凝胶法制备弱结合力超疏水薄膜,2017.4-2019.4,主持
5. 西北工业大学科研启动费,表面颗粒影响下水滴的形变及其控制,2016.1-2017.12,主持
6. 陕西省自然科学基金面上项目,液饼分割法构筑液体橡皮泥中的若干问题,2018.1-2019.12,主持
7. 中央高校基本科研业务费,液体橡皮泥的若干力学和热学行为研究,2018.1-2019.12,主持
Soft Matter, 2016, 12, 1655,利用不同颜色水滴制成的液体橡皮泥。
Soft Matter, 2016, 12, 1655,利用纳米金水溶液制成的U型液体橡皮泥及电泳过程。
Advanced Materials Interfaces, 2018, 5, **,弱结合力超疏水光学薄膜在水中提拉后最外层纳米颗粒被剥离。



学术成果 Academic Achievements
主要论文:
王凯宇,庞祥龙,李晓光*,超疏水表面液滴的振动特性及其与液滴体积的关系,物理学报,2021,70,076801
AnnasoGurav, Haixiao Shi, Mei Duan, Xianglong Pang, Xiaoguang Li*, Highly transparent, hot water and scratch resistant, lubricant-infused slippery surfaces developed from a mechanically-weak superhydrophobic coating, Chemical Engineering Journal, 2021, 416,127809
Haixiao Shi, Xiaoguang Li*, Monolayer nanoparticle-covered liquid marble production with low surface tension liquids, Advanced Materials Interfaces, 2020, 7, **
Jicheng Niu, Haixiao Shi, Huigang Wei, Bin Gao, Feng Xu, Xiaoguang Li*, Fei Li*, Liquid plasticine integrated with isoelectric focusing for miniaturized protein analysis, Analytical Chemistry, 2020, 92, 9048 (封面)

Junchao Huang, Ziheng Wang, Haixiao Shi, Xiaoguang Li*, Mechanical robustness of monolayer nanoparticle-covered liquid marbles, Soft Matter, 2020, 16, 4362
Renxian Wang, Xiaoguang Li*, On the effective surface tension of powder-derived liquid marbles, Powder Technology, 2020, 367, 608
Yiqi Wang, Haixiao Shi, Xiaoguang Li*, Revisiting the fabrication of superhydrophobic aluminum surfaces and their use as soft substrates for droplet manipulations. Journal of Material Science, 2019, 54,7469 (封面)
Xiaoguang Li*, liquid marbles from soot films, Soft Matter, 2020, 16, 4512
Xiaoguang Li*, Liquid marbles and liquid plasticines with nanoparticle monolayers. Advances in Colloid and Interface Science, 2019, 271, 101988 (综述)
Xiaoguang Li*, Haixiao Shi, Yueyun Hu.Rod-shaped liquid plasticine for gas diffusion detection. Soft Matter, 2019,15, 3085
Xiaoguang Li*, Renxian Wang, Shuai Huang, Yiqi Wang, Haixiao Shi.Capillary rise method for effective surface tension of monolayer nanoparticle-covered liquid marbles. Soft Matter, 2018, 14,9877.

Xiaoguang Li*,Yiqi Wang,Yao Yang, Senhao Wang, Duyang Zang, Xingguo Geng. Dynamic behavior of droplets under interfacial jamming of nanoparticles. Applied Physics Letters, 2018, 113, 133702
Xiaoguang Li*, Renxian Wang,Haixiao Shi, Bihai Song. Effective surface tension of liquid marbles using controllabe nanoparticle monolayers. Applied Physics Letters, 2018, 113, 101602
Xiaoguang Li*,Yiqi Wang, Renxian Wang, Senhao Wang, Duyang Zang, Xingguo Geng. A dip-decoating process for producing transparent bi-superhydrophobic and wrinkled water surfaces. Advanced Materials Interfaces, 2018, **.(封面)
Xiaoguang Li*Haixiao Shi, Yiqi Wang, Renxian Wang, Shuai Huang, Junchao Huang, Xingguo Geng, Duyang Zang. Liquid shaping based on liquid pancakes.Advanced Materials Interfaces, 2018, 5, **. (封底)
Xiaoguang Li*,Yiqi Wang, Junchao Huang, Yao Yang, Renxian Wang, Xingguo Geng, Duyang Zang. Monolayer nanoparticle-covered liquid marbles derived from a sol-gel coating. Applied Physics Letters, 2017, 111, 261604.
Youlai Xiang, Xiaoguang Li*, Ai Du, Shuai Wu, Jun Shen, Bin Zhou*, Timing of polyethylene glycol addition for the control of SiO2 sol structure and sol–gel coating properties, J. Coat. Technol. Res., 14, 447-454 (2017)
XiaoguangLi*Yahui Xu, Pengyu Lv, Hao Lin, Feng Du, Yueyun Hu,Jun Shen, Huiling Duan. Liquidplasticine: controlled deformation and recovery of droplets with interfacialnanoparticle jamming. SoftMatter, 2016, 12, 165. (封面)
XiaoguangLi, Liping Zou, Guangming Wu, Jun Shen, Laser-induceddamage on ordered and amorphous sol-gel silica coatings, Optical Materials Express, 2014, 4, 2478
XiaoguangLi, Jun Shen, Deforming water droplet with asuperhydrophobic silica coating, Chem.Commun, 2013, 49, 10016.
XiaoguangLi, Jun Shen, A facile two-step dipping process based ontwo silica systems for a superhydrophobic surface, Chem. Commun, 2011, 47, 10761.
XiaoguangLi, Mark Gross, Bob Oreb, Jun Shen, Increasedlaser-damageresistance of sol-gel silica coating by structure modification. J. Phys. Chem. C., 2012, 116, 18367.
XiaoguangLi,MarkGross, Katie Green, Bob Oreb, Jun Shen. Ultraviolet laser-induced damage onfused silica substrate and its sol-gel coating, Optics Letters, 2012, 37, 2364.
XiaoguangLi, Jun Shen, A scratch-resistant andhydrophobic broadband antireflective coating by sol–gel method, Thin Solid Films, 2011, 519, 6236.
XiaoguangLi, Jun Shen, The stability of sol–gel silica coatingsin vacuum with organic contaminants, J.Sol-Gel. Sci. Technol. 2011, 59, 539.
Xiaoguang Li, Liping Zou, Lili Xu, Jun Shen. Asuperhydrophobic surface by the combination of two sizes of silica particles. RareMetal Materials and Engineering.2012, 41, 144
Xiaoguang Li, Xiaodong Wang, Jun Shen. Broadbandantireflective coatings with different film designs by sol-gel method. RareMetal Materials and Engineering.2012, 41, 29
Zhaojunhan, Hamid Mehdipour, Xiaoguang Li,Jun Shen, Lakshman Randeniya, Hui Ying Yang, Kostya (Ken) Ostrikov. SWCNTnetworks on nanoporous silica catalyst support: morphological and connectivitycontrol for nanoelectronic, gas-sensing, and biosensing devices. ACSNano, 2012, 6, 5809.
LipingZou, Xiaoguang Li, QinghuaZhang, Jun Shen, An abrasion-resistant and broadbandantireflective silica coating by block copolymer assisted sol?gel method. Langmuir,2014, 30, 10481
WeiweiXu, Jun Tang, Peng Yan, Xiaoguang Li,Zhihua Zhang, Jun Shen, Bin Zhou. Template confined synthesis of Cu- or Cu2O-dopedSiO2 aerogels from Cu(II)-containing composites by in situalcohothermal reduction. RSC Advance, 2014, 4, 49541
YangShen, Ai Du, Xue-Ling Wu, XiaoguangLi, Jun Shen, Bin Zhou. Low-cost carbon nanotube aerogels with varyingand controllable density. J. Sol-Gel. Sci. Technol. 2016, 79, 76.
YangShen, Ai Du, Xiaoguang Li,Xiuguang Huang, Junjian Ye, Zhiyong Xie, Xueling Wu, Jun Shen, Bin Zhou. Preparationand optimization of aerogel flyer-plates with graded density, Materialsand Design, 2016, 110, 225-232
许莉丽,李晓光,倪星元,沈军. 微结构与表面修饰对二氧化硅多孔薄膜疏水性能的影响,无机化学学报,2013,29,449
刘源,沈军,李晓光,周斌,张志华. 疏水性对溶胶-凝胶SiO2薄膜抗真空污染及抗激光损伤能力的影响, 无机化学学报,2013, 29, 1339
KejunLin, Duyang Zang, Xiaoguang Li,Xingguo Geng. Superhydrophobicpolytetrafluoroethylene surfaces by spray coating on porous and continuous substrates.RSCAdvance, 2016, 6, 47096
Duyang Zang, Zhicong Zhai, Lin Li, KejunLin, Xiaoguang Li, andXingguo Geng, Verticalvibration dynamics of acoustically levitated drop containing two immiscibleliquids, Appl. Phys. Lett., 2016, 109, 101602
Wang Heping, Xiaoguang Li, Li Yanggui, Geng Xingguo, Simulation of phaseseparation with large component ratio for oil-in-water emulsion in ultrasoundfield, Ultrasonics Sonochemistry, 2017, 36, 101-111
Wang Heping, Geng Xingguo, Xiaoguang Li, and Zang Duyang, LatticeBoltzmann simulation of phase separation under dynamic temperature and shear:Coupling effects of shear convection and thermal diffusion, Eur.Phys. J. E (2016) 39: 102
DuyangZang, Yinkai Yu, Zhen Chen, XiaoguangLi, Hongjing Wu, Xingguo Geng. Acoustic levitation of liquid drops:Dynamics, manipulation and phase transitions, Advances in Colloid and InterfaceScience 243 (2017) 77–85
ZhenChen, Duyang Zang, Liang Zhao, Mengfei Qu, Xu Li, Xiaoguang Li, Lixin Li, Xingguo Geng. Liquid Marble Coalescenceand Triggered Microreaction Driven by Acoustic Levitation. Langmuir, 33, 6232-6239(2017)
DuyangZang, Kejun Lin, Lin Li, Zhen Chen,Xiaoguang Li, Xingguo Geng. Acoustic levitation of soap bubbles in air: Beyondthe half-wavelength limit of sound. Appl. Phys. Lett., 2017, 110, 121602
WangHeping, Li Xiaoguang, Zang,Duyang, Hu Rui, Geng Xingguo, Effect of the Hartmann number on the phaseseparation controlled by magnetic field for binary mixture system with largecomponent ratio,European Physical Journal Plus (2017) 131:483.
Xiangyoulai, Du Ai, Li Xiaoguang,Sun Wei, Wu Shuai, Li Tiemin, Liu Mingfang, Zhou Bin, Optical Materials, 2017,69, 65-273
李晓光,沈军. 光学薄膜的激光损伤研究进展, 强激光与粒子束,2010,22,2237
李晓光,沈军.高激光损伤阈值化学膜透射元件的研制,原子能科学与技术,2014,48,763
向友来,李晓光,杜艾,吴帅,沈军,周斌,聚乙二醇调控 SiO2溶胶结构及薄膜性能,硅酸盐学报,2017, 45, 166
沈军,刘源,李晓光. 溶胶-凝胶SiO2减反膜的表面修饰和抗污染特性,硅酸盐学报,2010,38,2054
JunShen, Shengzhao Wang, Xiaodong Wang, Yuan Liu, Xiaoguang Li. Refractive index controllable coatings foroptical detectors, Proc. SPIE, 2009, 7381: 73812C1-8.
Wenli Di, Zehui Zhang, Lin Li, Kejun Lin, Jun Li, Xiaoguang Li, Bernard Binks, Xiaopeng Chen, Duyang Zang. Physical Review Fulids, 2018, 3, 103606







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