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Apatite-forming ability and mechanical behavior of PTMO-modified CaO-TiO{sub}2 hybrids prepared by sol-gel processing

机译:通过溶胶 - 凝胶加工制备的PTMO改性CaO-TiO {Sub} 2杂种的磷灰石形成能力和力学行为

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Triethoxysilane end-capped poly (tetramethylene oxide) (Si-PTMO)-modified CaO-TiO{sub}2 hybrids were prepared by hydrolysis and polycondensation of Sj-PTMO, tetraisopropyltitanate (TiPT) and calcium nitrate. Under constant ratio of (Si-PTMO)/(TiPT) = 2/3 in weight, the molar ratio of (Ca(NO{sub}3){sub}2)/(TiPT) was varied from 0 to 0.15. The apatite-forming ability was evaluated in a simulated body fluid (SBF) and the mechanical properties including Young's modulus, strength and strain at failure were measured in air by three-point bending test. The apatite-forming ability in SBF remarkably increased with increasing CaO content, although the bending strength and Young's modulus decreased. The hybrid samples with (Ca(NO{sub}3){sub}2)/ (TiPT) = 0.10 and 0.15 in mol, respectively, formed the apatite on their surface within only one day. The failure strains were found to be in the range of about 13 to 25%. Thus, the hybrids exhibiting both high apatite-forming ability and high capability for deformation were successfully synthesized. These hybrids may be useful as new kind of bioactive bone-repairing materials.
机译:通过SJ-PTMO,四异丙基钛(TiP)和硝酸钙,通过水解和缩聚来制备三乙氧基硅烷端盖聚(四甲基氧化物)(Si-PTMO) - 制定的CaO-TiO {Sub} 2杂化。在(Si-PTMO)/(TiPT)= 2/3重量的恒定比例下,(Ca(No {sub} 3){sub} 2)/(tipt)的摩尔比在0到0.15中变化。在模拟体液(SBF)中评价磷灰石形成能力,并通过三点弯曲试验在空气中测量包括杨氏模量,强度和菌株的机械性能。随着CAO含量的增加,SBF中的磷灰石形成能力显着增加,尽管弯曲强度和杨氏模量减少了。杂交样品(Ca(No {Sub} 3)/(TiP} 2)/(TiPt)= 0.10和0.15分别为摩尔,在其表面上仅在一天内形成磷灰石。发现破坏菌株在约13至25%的范围内。因此,成功地合成了表现出高磷灰石形成能力和高能力的杂种。这些杂种可用作新种生物活性骨修复材料。

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