监测钛基板上改性多晶 CVD-Diamond 涂层上碳化羟磷灰石的生长情况

Crystals Pub Date : 2024-01-06 DOI:10.3390/cryst14010066
Rocco Carcione, V. Guglielmotti, Francesco Mura, S. Orlanducci, E. Tamburri
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引用次数: 0

摘要

在钛基底上生产金刚石涂层已被证明是一种前景广阔的应用策略,应用范围从生物传感到硬组织工程。本研究的重点是监测通过热丝化学气相沉积(HF-CVD)方法在钛基底上合成的多晶金刚石(PCD)上类骨碳化羟基磷灰石(C-HA)的成核和生长。金刚石涂层的表面端点通过氧化处理进行了选择性修饰。通过模拟体液(SBF)沉淀完成的 C-HA 沉积过程在 3 至 20 天内都受到拉曼光谱分析的监控。形态和结构研究表明,对 PCD 表面化学性质的调节增强了所制材料的生物活性,从而形成了具有针状纹理和典型骨矿物质化学成分的连续 C-HA 涂层。具体来说,在 SBF 中浸泡 20 天后,计算得出的碳酸盐重量百分比和 Ca/P 比率分别为 5.5% 和 2.1。基于这些结果,这项研究为先进的生物医学和技术应用定制 CVD 金刚石特性带来了新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring of Carbonated Hydroxyapatite Growth on Modified Polycrystalline CVD-Diamond Coatings on Titanium Substrates
Production of diamond coatings on titanium substrates has demonstrated as a promising strategy for applications ranging from biosensing to hard tissue engineering. The present study focuses on monitoring the nucleation and growth of bone-like carbonated-hydroxyapatite (C-HA) on polycrystalline diamond (PCD) synthetized on titanium substrate by means of a hot filament chemical vapor deposition (HF-CVD) method. The surface terminations of diamond coatings were selectively modified by oxidative treatments. The process of the C-HA deposition, accomplished by precipitation from simulated body fluid (SBF), was monitored from 3 to 20 days by Raman spectroscopy analysis. The coupling of morphological and structural investigations suggests that the modulation of the PCD surface chemistry enhances the bioactivity of the produced materials, allowing for the formation of continuous C-HA coatings with needle-like texture and chemical composition typical of those of the bone mineral. Specifically, after 20 days of immersion in SBF the calculated carbonate weight percent and the Ca/P ratio are 5.5% and 2.1, respectively. Based on these results, this study brings a novelty in tailoring the CVD-diamond properties for advanced biomedical and technological applications.
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