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段可

领域:新材料产业 学校:西南交通大学职称:副教授

(1) 材料化学,生物医学材料 (2) 材料表面工程,涂层...

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教育背景

工作经历

项目课题经历

主持项目 骨关节表面含生物活性物质微球多孔复合涂层,自然科学基金 微球-多孔陶瓷涂层制备,教育部博士点基金(新教师类)

论文、成果、著作等

论文 ◦Ke Duan, Youxin Hu, Karen Long, Andrew Toms, Helen M Burt, Thomas R Oxland,Bas A Masri, Clive P Duncan, Donald S Garbuz, and Rizhi Wang, Effect of alendronate-containing coatings on osteointegration into porous tantalum in a cortical bone model, Nano Life, in press. ◦常立娜, 屈树新, 林孙忠, 段可, 翁杰, 载黄芪多糖羟基磷灰石的制备及生物学性能评价, 无机材料学报, 2011, 26(1): 22-28. ◦史婕, 冯波, 鲁雄, 汪建新, 段可, 翁杰, BSA 和 FN 在纳米化钛表面的蛋白吸附及释放行为, 无机材料学报, 2011, 26 (12): 1299-1303. ◦张铖祖, 屈树新, 廖跃, 段可, 翁杰, 正交优化载药超高分子量聚乙烯药物分散及性能, 复合材料学报, 2011, 28(6): 1-9. ◦姜晓鑫, 屈树新, 林孙忠, 段可, 翁杰, 骨碎补载入对磷酸钙骨水泥性能的影响及体外生物学评价, 无机材料学报, 2011, 26(1): 29-37. ◦黄晶,蓝琳,肖东琴,罗会涛,智伟,段可,翁杰,张聪,熱化學法制備CaTiO3涂層及涂層的生物相容性, 中国组织工程研究与临床康复,2011, 15(16): 2901-2904. ◦J. Zhao, K. Duan, J.W. Zhang, L.Y. Guo, J. Weng, Preparation of Highly Interconnected Porous Hydroxyapatite Scaffolds by Chitin Gel-casting, Mater Sci Eng C, 2011, 31(3): 697-701 ◦段可;翁傑;Ri-Zhi Wang, 適用于各種親水性基體表面的仿生燐酸鈣塗層製備方法, 化工(台湾化工学会志), 2010, 59(1): 2010, 57(1): 52-58. (Invited article) ◦Mehdi Kazemzadeh-Narbat, Ke Duan, Jason Kindrachuk, Robert E W Hancock, Rizhi Wang1, Antimicrobial peptides on calcium phosphate-coated titanium for the prevention of implant-associated infection, Biomaterials, 2010, 31(36): 9519-9526. ◦Jianda Zhang, Jianxin Wang*, Shaobing Zhou, Ke Duan, Bo Feng, Jie Weng, Hongmei Tang, Peizuo Wu, Ionic liquid-controlled synthesis of ZnO microspheres, J Mater Chem, 2010, 20: 9798-9804. ◦J Zhao, X Lu, Ke Duan, LY Guo, SB Zhou, J Weng, Improving mechanical and biological properties of macroporous hydroxyapatite scaffolds through composite coatings, Colloids and Surfaces B: Biointerfaces, 2009, 74(1): 159-166. ◦鲍益富,翁杰,冯波,段可,燃气流量对超音速氧焰喷涂羟基磷灰石颗粒性能的影响,材料保护,2009,42, 12, . ◦鲍益富,翁杰,冯波,段可, 超音速氧焰喷涂HA/BG涂层的制备及表征, 热加工工艺,2009, 38, 20, 97-99. ◦王秀红, 段可, 冯波, 翁杰, Rizhi Wang, 一种新表面化学处理用于Ti6Al4V合金表面制备仿生磷酸钙涂层, 高等学校化学学报, 2009, 30, 6, 1071-1074. ◦Ke Duan, Allen Tang, Rizhi Wang, A new evaporation-based method for the preparation of biomimetic calcium phosphate coatings on metals, Mater Sci Eng C, 29, 4, 1334-1337. ◦Ke Duan, Rizhi Wang, Accelerating calcium phosphate coating growth on PLGA by evaporation-induced surface crystallization, Appl Surf Sci, 2008, 255, 2442-2448. ◦WY Kim, YX Hu, K Duan, R Wang, DS Garbuz, BA Masri, CP Duncan, Gap filling and enhanced osteoconduction associated with alendronate coated porous tantalum, J Bone Joint Surg (Br), 2008, 90 (Suppl), 541. ◦DS Garbuz, YX Hu, WY Kim, K Duan, B Masri, T Oxland, HM Burt, R Wang, CP Duncan, Gap filling and enhanced osteoconduction associated with Alendronate coated porous tantalum, J Bone Joint Surg (Am), 2008, 90, 1090-1100. ◦Ke Duan and Rizhi Wang, Surface Modification of bone implants through wet chemistry, J Mater Chem, 2006, 24, 2309-2321. ◦Ke Duan, Yuwei Fan, Rizhi Wang, Electrolytically deposited calcium etidronate drug coatings on titanium substrate, J Biomed Mater Res B, 2005, 72, 43-51. ◦Yuwei Fan, Ke Duan, Rizhi Wang, A composite coating by electrolysis-induced collagen self-assembly and calcium phosphate mineralization, Biomaterials, 2005, 26, 1623-1632. ◦Ke Duan, Yuwei Fan, Rizhi Wang, Electrochemical deposition and patterning of calcium phosphate bioceramic coatings, Ceram Trans, 2003, 147: 53-61. Copyright © 2011 http://inc.swjtu.edu.cn 西南交

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