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Thermally Driven Stability of Octadecylphosphonic Acid Thin Films Grown on SS316L

机译:SS316L上生长的十八烷基膦酸薄膜的热驱动稳定性

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摘要

Stainless steel 316L is widely used as a biomedical implant material; however, there is concern about the corrosion of metallic implants in the physiological environment. The corrosion process can cause mechanical failure due to resulting cracks and cavities in the implant. Alkyl phosphonic acid forms a thin film by self-assembly on the stainless steel surface and this report conclusively shows that thermal treatment of the octadecylphosphonic acid (ODPA) film greatly enhances the stability of the ODPA molecules on the substrate surface. AFM images taken from the modified substrates revealed that thermally treated films remain intact after methanol, THF, and water flushes, whereas untreated films suffer substantial loss. Water contact angles also show that the hydrophobicity of thermally treated films does not diminish after being incubated in a dynamic flow of water for a 3-hour period, whereas the untreated film becomes increasingly hydrophilic due to loss of ODPA. IR spectra taken of both treated and untreated films after water and THF flushes show that the remaining film retains its initial crystallinity. A model is suggested to explain the stability of ODPA film enhanced by thermal treatment. An ODPA molecule is physisorbed to the surface weakly by hydrogen bonding. Heating drives away water molecules leading to the formation of strong monodentate or mixed mono/bi-dentate bonds of ODPA molecule to the surface.
机译:316L不锈钢被广泛用作生物医学植入物材料。然而,人们担心金属植入物在生理环境中的腐蚀。腐蚀过程会由于植入物中产生的裂纹和空腔而导致机械故障。烷基膦酸通过在不锈钢表面上自组装而形成薄膜,并且该报告最终表明,对十八烷基膦酸(ODPA)膜进行热处理可以大大提高基材表面上ODPA分子的稳定性。从改性的基材上拍摄的AFM图像显示,在甲醇,THF和水冲洗后,热处理过的膜仍保持完整,而未处理过的膜则遭受重大损失。水接触角还表明,在动态水流中孵育3小时后,热处理过的薄膜的疏水性不会降低,而由于ODPA的损失,未处理过的薄膜变得越来越亲水。水和THF冲洗后,已处理和未处理薄膜的红外光谱表明,剩余的薄膜仍保持其初始结晶度。建议使用一个模型来解释通过热处理增强的ODPA膜的稳定性。 ODPA分子通过氢键微弱地物理吸附到表面。加热将水分子带走,导致ODPA分子与表面形成牢固的单齿或单/双齿混合键。

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