黄巧玲 厦门大学物理科学与技术学院助理教授
Email:qlhuang@xmu.edu.cn
个人简历:
2004/09-2008/06 厦门大学化学系 学士
2008/09-2013/12 厦门大学化学系 硕博连读
2010/12-1011/1 台湾阳明大学 交流学生
2011/09-2013/09 美国宾州州立大学 访问学者
2014/01-至今 厦门大学物理科学与技术学院 助理教授
研究领域:
(1)生物材料表面修饰与改性;
(2)生物材料表界面研究;
(3)细胞粘附机理研究;
(4)蛋白吸附
主持基金情况:
1. 国家重点研发计划项目, 2016YFC1100300, 生物材料表界面及表面改性研究, 2016/07-2020/12, 40万元, 在研, 子课题负责人
2. 2016年广东省自然科学基金(博士启动)项目, 2016A030310370, TiO2纳米管促进骨组织修复的研究, 2016/06-2019/06, 10万元, 在研, 主持
3. 中央高校基本科研业务费专项资金(厦门大学基础创新科研基金), 20720150218, TiO2纳米管微图案在骨修复中的应用, 2016/01-2018/12, 38.5万元, 已结题, 主持
4. 中央高校基本科研业务费专项资金(厦门大学基础创新科研基金), 20720140530, 血清蛋白在细胞粘附过程中的作用, 2014/01-2016/12, 20万元, 已结题, 主持
发表文章:
1. Huang Q, Lin L, Yang Y, Hu R, Vogler EA, Lin C*. Role of trapped air in the formation of cell-and-protein micropatterns on superhydrophobic/superhydrophilic microtemplated surfaces. Biomaterials 2012; 33: 8213-20.
2. Huang Q, Cheng A, Antensteiner M, Lin C, Vogler EA*. Mammalian cell-adhesion kinetics measured by suspension depletion. Biomaterials 2013; 34: 434-41.
3. Huang Q, Yang Y, Zheng D, Song R, Zhang Y, Jiang P, Vogler EA, Lin C*. Effect of construction of TiO2 nanotubes on platelet behaviors: Structure-property Relationships.Acta Biomaterialia, 2017; 51: 505-12.
4. Huang Q, Yang Y, Hu R, Lin C, Sun L*, Vogler EA. Reduced platelet adhesion and improved corrosion resistance of superhydrophobic TiO2-nanotube-coated 316L stainless steel. Colloids Surf, B. 2015; 125: 134-41.
5. Mu P, Li Y, Zhang Y, Yang Y, Hu R, Zhao X, Huang A, Zhang R, Liu X,Huang Q*, Lin C. High-throughput Screening of Rat Mesenchymal Stem Cell Behavior on Gradient TiO2 Nanotubes. ACS Biomaterials Science & Engineering. 2018; 4(8): 2804-14.
6. Li Y, Dong Y, Yang Y, Yu P, Zhang Y, Hu J, Li T, Zhang X, Liu X, Xu Q, Huang Q*, Lin C. Rational Design of Silver Gradient for Studying Size Effect of Silver Nanoparticles on Contact Killing. ACS Biomaterials Science & Engineering 2018.
7. Huang Q, Antensteiner M, Lin C, Vogler EA*, Liu X. Graphical Analysis of Mammalian Cell Adhesion in vitro. Colloids Surf, B. 2016; 148: 211-9.
8. Lu Y, Zhang S, Liu X, Ye S, Zhou X,Huang Q*, Ren L*. Silk/agarose scaffolds with tunable properties via SDS assisted rapid gelation.RSC Advances. 2017; 7: 21740-8.
9. Li M, Chen Y, Mao L, Jiang Y*, Liu M, Huang Q, Yu Z, Wang S, Yu S*, Lin C, Liu X, Cölfen H*. Seeded Mineralization Leads to Hierarchical CaCO3 Thin Coatings on Fibers for Oil/Water Separation Applications.Langmuir. 2018; 7(61):2942-51.
10. Song R, Zhang Y, Huang Q, Yang Y, Lin L, Liang J, Hu R, Rui G, Lin C*, Facile Construction of Structural Gradient of TiO2 Nanotube Arrays on Medical Titanium for High Throughput Evaluation of Biocompatibility and Antibacterial Property, ACS Applied Bio Materials, 2018, 1, 1056−1065.
11. Xu X, Wu J, Meng Z, Li Y, Huang Q, Qi Y, et al. Enhanced Exfoliation of Biocompatible MoS2 Nanosheets by Wool Keratin. ACS Applied Nano Materials. 2018; 1: 5460-9.
12. Yang Y, Zhang Y, Hu R,Huang Q, Wu K, Zhang L, et al. Antibacterial and cytocompatible AgNPs constructed with the assistance of Mefp-1 for orthopaedic implants. RSC Advances. 2017; 7: 38434-43.
13. Lin N, Cao L, Huang Q, Wang C, Wang Y, Zhou J, et al. Functionalization of Silk Fibroin Materials at Mesoscale. Adv Funct Mater. 2016; 26: 8885-902.
14. Lin N, Lin Y,Huang Q, Liu XY. Supramolecular gels and mesoscopic structure. (Chinese)Acta Physica Sinica. 2016; 65: 174702-.
15. Nguyen AT,Huang Q, Yang Z, Lin N, Xu G, Liu X*, Crystal Networks in Silk Fibrous Materials: From Hierarchical Structure to Ultra-Performance. Small2015; 11: 1039-54.
16. Liang J, Song R,Huang Q, Yang Y, Lin L, Zhang Y, Jiang P, Duan H, Dong X, Lin C*, Electrochemical Construction of a Bio-inspired Micro/nano-Textured Structure with Cell-sized Microhole Arrays on Biomedical Titanium to Enhance Bioactivity.Electrochim Acta. 2015; 174: 1149-59.
17. Lin L, Zheng D,Huang Q, Song R, Yang Y, and Lin C*. Construction of Transparent Superhydrophilic–Superhydrophobic Micropatterns for High-Throughput Living Cell Imaging.Sci. Adv. Mater. 2013; 5: 494-8.
18. Wang G,Huang Q, Hu R, Lin C*, Wang H, Zhang L, et al. Superhydrophilic/Superhydrophobic Surface Constructions on Titanium and Their Effects on Anti-bacterial Properties. (Chinese)Electrochemistry 2011; 17:388-92.