Sr/ZnO doped titania nanotube array: An effective surface system with excellent osteoinductivity and self-antibacterial activity.
Zhang, Kejia; Zhu, Yizhou; Liu, Xiangmei; Cui, Zhenduo; Yang, Xianjin; Yeung, Kelvin W. K.; Pan, Haobo; Wu, Shuilin
刊名MATERIALS & DESIGN
2017
文献子类期刊论文
英文摘要Both excellent osteoinductivity and self-antibacterial performance are important for the successful clinical application of Ti-based metals as bone implant materials. Titania nanotube (TNT) arrays can endow Ti-based materials with multi-biofunctions due to the unique geometric structures of TNT that can be directly functionalized on the substrates through diverse techniques. In this work, strontium (Sr) and zinc oxides (ZnO) were doped into TNT arrays successively by hydrothermal treatment (HT) and subsequent atomic layer deposition (ALD). The super hydrophobic TNT array was obtained by grafting octadecylphosphonic acid (OPDA)-toluene. The results showed that the dual doping of Sr and ZnO together with super-hydrophobic property could not only enhance the osteoinductivity of Ti-based implants but also endow these implant materials with effective self-antibacterial ability. The former was ascribed to the osteogenic effects of Sr while the latter was contributed to the synergistic effects of ZnO and hydrophobic of OPDA. 
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语种英语
内容类型期刊论文
源URL[http://ir.siat.ac.cn:8080/handle/172644/12367]  
专题深圳先进技术研究院_医药所
作者单位MATERIALS & DESIGN
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GB/T 7714
Zhang, Kejia,Zhu, Yizhou,Liu, Xiangmei,et al. Sr/ZnO doped titania nanotube array: An effective surface system with excellent osteoinductivity and self-antibacterial activity.[J]. MATERIALS & DESIGN,2017.
APA Zhang, Kejia.,Zhu, Yizhou.,Liu, Xiangmei.,Cui, Zhenduo.,Yang, Xianjin.,...&Wu, Shuilin.(2017).Sr/ZnO doped titania nanotube array: An effective surface system with excellent osteoinductivity and self-antibacterial activity..MATERIALS & DESIGN.
MLA Zhang, Kejia,et al."Sr/ZnO doped titania nanotube array: An effective surface system with excellent osteoinductivity and self-antibacterial activity.".MATERIALS & DESIGN (2017).
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