个人简介
工作经历
2016.12-至今 中南大学 机电工程学院 特聘副教授
教育经历
2012.09-2016.06 中南大学 机械工程 博士
2009.09-2012.06 中南大学 机械工程 硕士
2005.09-2009.06 青岛大学 机械工程及自动化 学士
研究领域
激光3D打印在生物制造领域的应用,涉及激光微纳制造、增材制造、生物制造等。
近期论文
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1. Chengde Gao, Shuping Peng, Pei Feng, Cijun Shuai. Bone biomaterials and interactions with stem cells[J]. Bone Research, 5: 17059; doi: 10.1038/boneres.2017.59. (2017) (SCI,影响因子: 12.354,JCR一区,Nature旗下期刊,ESI高被引论文)
2. Cijun Shuai, Pei Feng, Ping Wu, Yong Liu, Xinyan Liu, Duan Lai, Chengde Gao* and Shuping Peng. A combined nanostructure constructed by graphene and boron nitride nanotubes reinforces ceramic scaffolds[J]. Chemical Engineering Journal, 313: 487-497. (2017) (SCI,影响因子: 6.735,JCR一区,TOP3期刊)
3. Chengde Gao, Pei Feng, Shuping Peng, Cijun Shuai. Carbon nanotubes, graphene and boron nitride nanotubes reinforced bioactive ceramics for bone repair[J]. Acta Biomaterialia, 61: 1-20. (2017) (SCI,影响因子: 6.383,JCR一区,TOP3期刊)
4. Chengde Gao, Bo Yang, Huanlong Hu, Jinglin Liu, Cijun Shuai, Shuping Peng. Enhanced sintering ability of biphasic calcium phosphate by polymers used for bone scaffold fabrication[J]. Materials Science & Engineering C, 33(7): 3802-3810. (2013) (SCI,影响因子: 5.08,JCR一区)
5. Cijun Shuai, Bing Wang, Youwen Yang, Shuping Peng, Chengde Gao*. 3D honeycomb nanostructure-encapsulated magnesium alloys with superior corrosion resistance and mechanical properties [J]. Composites Part B: Engineering, 162: 611-620. (2019) (SCI,影响因子: 4.92,JCR一区,TOP2期刊)
6. Cijun Shuai, Sheng Li, Shuping Peng, Pei Feng, Yuxiao Lai and Chengde Gao*. Biodegradable metallic bone implants[J]. Materials Chemistry Frontiers, 3, 544-562. (2019) (SCI)
7. Cijun Shuai, Youwen Yang, Pei Feng, Shuping Peng, Wang Guo, Anjie Min, Chengde Gao*. A multi-scale porous scaffold fabricated by a combined additive manufacturing and chemical etching process for bone tissue engineering[J]. International Journal of Bioprinting, 4(2): 133-12. (2018) (SCI)
8. Chengde Gao, Tingting Liu, Cijun Shuai, Shuping Peng. Enhancement mechanisms of graphene in nano-58S bioactive glass scaffold: mechanical and biological performance[J]. Scientific Reports, 4: 4712-10. (2014) (SCI,影响因子: 4.122,JCR一区)
9. Chengde Gao, Pingpin Wei, Pei Feng, Tao Xiao, Cijun Shuai, Shuping Peng. Nano SiO2 and MgO improve the properties of porous β-TCP scaffolds via advanced manufacturing technology[J]. International Journal of Molecular Sciences, 16(4): 6818-6830. (2015) (SCI,影响因子: 3.687,JCR二区)
10. Chengde Gao, Youwen Deng, Pei Feng, Zhongzheng Mao, Pengjian Li, Bo Yang, Junjie Deng, Yiyuan Cao, Cijun Shuai, Shuping Peng. Current progress in bioactive ceramic scaffolds for bone repair and regeneration[J]. International Journal of Molecular Sciences, 15(3): 4714-4732. (2014) (SCI,影响因子: 3.687,JCR二区)
11. Cijun Shuai, Long Liu, Mingchun Zhao, Pei Feng, Youwen Yang, Wang Guo, Chengde Gao* and Fulai Yuan. Microstructure, biodegradation, antibacterial and mechanical properties of ZK60-Cu alloys prepared by selective laser melting technique[J]. Journal of Materials Science & Technology, 34(10): 1944-1952. (2018) (SCI,影响因子: 3.609,JCR一区)
12. Cijun Shuai, Chenying Shuai, Pei Feng, Youwen Yang, Yong Xu, Tian Qin, Sheng Yang, Chengde Gao*, Shuping Peng. Silane modified diopside for improved interfacial adhesion and bioactivity of composite scaffolds [J]. Molecules, 22(4): 511-524. (2017) (SCI,影响因子: 3.098,JCR二区)
13. Cijun Shuai, Yuanzhuo Zhou, Youwen Yang, Pei Feng, Long Liu, Chongxian He, Mingchun Zhao, Sheng Yang, Chengde Gao* and Ping Wu. Biodegradation resistance and bioactivity of hydroxyapatite enhanced Mg-Zn composites via selective laser melting [J]. Materials, 10(3): 307-318. (2017) (SCI,影响因子: 2.467,JCR二区)
14. Cijun Shuai, Chenying Shuai, Ping Wu, Fulai Yuan, Pei Feng, Youwen Yang, Wang Guo, Xiaohan Fan, Ting Su, Shuping Peng and Chengde Gao*. Characterization and bioactivity evaluation of (polyetheretherketone/polyglycolicacid)-hydroyapatite scaffolds for tissue regeneration [J]. Materials, 9(11): 934-946. (2016) (SCI,影响因子: 2.467,JCR二区)
15. Chengde Gao, Jingyu Zhuang, Pengjian Li, Cijun Shuai, Shuping Peng. Preparation of micro/nanometer-sized porous surface structure of calcium phosphate scaffolds and the influence on biocompatibility[J]. Journal of Materials Research, 29(10): 1144-1152. (2014) (SCI,影响因子: 1.495,JCR三区)