Department of Biomaterials Science, Institute for Materials Research, Tohoku University, Aoba-ku, Sendai 980-8577, Japan.
J Biomed Mater Res B Appl Biomater. 2013 Jul;101(5):776-83. doi: 10.1002/jbm.b.32881. Epub 2013 Jan 29.
The number of hydroxyl groups on a Ti-29Nb-13Ta-4.6Zr (TNTZ) alloy surface was controlled through H₂O₂ treatment for further improvement of the adhesive strength and durability against water of TNTZ/silane layers (SILs)/segmented polyurethane (SPU) composites. The effect of the terminal functional groups on the adhesive strength of SPU on TNTZ, and the adhesiveness of SPU on TNTZ against water was investigated. Three types of silane-coupling agents were used to bind TNTZ and SPU: methacryloxypropyltrimethoxysilane (γ-MPTS), aminopropyltriethoxysilane (APS), and mercaptopropyltrimethoxysilane (γ-MPS). The adhesive strength of each composite was evaluated by shear bonding tests. The number of hydroxyl groups increases with an increase in treatment time at a H₂O₂ concentration of 5% (v/v). On the other hand, an increase from 5% (v/v) to 30% (v/v) in H₂O₂ concentration leads to a decrease in the number of hydroxyl groups on the TNTZ surface because at higher H₂O₂ concentrations, the reaction that consumes the hydroxyl groups is dominant. The shear bonding strength is doubled compared with the untreated TNTZ/SIL/SPU interface. Although the shear bonding strength decreases after immersion in water for 30 days when APS and γ-MPS are used, TNTZ/γ-MPTS/SPU composites exhibit good durability to water and maintain an equivalent shear bonding strength before immersion in water.
通过 H₂O₂ 处理来控制 Ti-29Nb-13Ta-4.6Zr(TNTZ)合金表面的羟基数量,以进一步提高 TNTZ/硅烷层(SIL)/嵌段聚氨酯(SPU)复合材料的粘结强度和耐水性能。研究了末端官能团对 SPU 在 TNTZ 上的粘结强度以及 SPU 在 TNTZ 上的耐水性的影响。使用三种硅烷偶联剂将 TNTZ 和 SPU 结合在一起:甲基丙烯酰氧基丙基三甲氧基硅烷(γ-MPTS)、氨丙基三乙氧基硅烷(APS)和巯丙基三甲氧基硅烷(γ-MPS)。通过剪切粘结试验评估每种复合材料的粘结强度。在 5%(v/v)的 H₂O₂浓度下,处理时间的增加会导致羟基数量的增加。另一方面,H₂O₂浓度从 5%(v/v)增加到 30%(v/v)会导致 TNTZ 表面的羟基数量减少,因为在较高的 H₂O₂浓度下,消耗羟基的反应占主导地位。与未经处理的 TNTZ/SIL/SPU 界面相比,剪切粘结强度提高了一倍。尽管当使用 APS 和 γ-MPS 时,在水中浸泡 30 天后剪切粘结强度会下降,但 TNTZ/γ-MPTS/SPU 复合材料对水具有良好的耐久性,在浸入水中之前保持等效的剪切粘结强度。