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Tailoring the surface characteristics of electrophoretically deposited chitosan-based bioactive glass composite coatings on titanium implants via grit blasting

机译:通过砂砾喷射来剪裁电泳沉积的基于电泳的壳聚糖的生物活性玻璃复合涂层的表面特征

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Chitosan, chitosan/45S5 bioactive glass (mBG), chitosan/nanobioglass (nBG), and chitosan/mBG/nBG coatings were deposited on grit-blasted and mirror-polished Ti6Al4 V alloy substrates by electrophoretic deposition (EPD). This study discusses how the surface characteristics of the substrates influence the 3D surface topography, areal surface roughness, morphology, and wettability of chitosan-based thin composite coatings while focusing on tuning the surface characteristics by grit-blasting. The surfaces of coated and uncoated specimens were characterised by SEM analysis with EDX, image analysis, contact angle measurements, 3D surface topography analysis, FTIR analysis, and in-vitro bioactivity studies. The coatings deposited on grit-blasted substrates presented rougher surface topography, higher areal surface roughness values and wettability compared to the mirror-polished surfaces. A deposition mechanism was suggested to clarify the deposition of chitosan/mBG coatings on grit-blasted substrates. Apatite crystals were formed on chitosan/mBG coatings after immersion in SBF for three days. A robust image analysis method was applied to reveal the distribution and area coverage percent of deposited mBG, which demonstrated the increase of mBG coverage with the increases in voltage. The present study shows that grit blasting could be a favourable surface treatment to tailor the surface characteristics of organic-inorganic composite coatings by influencing their surface topography, roughness, and wettability.
机译:壳聚糖,壳聚糖/ 45S5生物活性玻璃(MBG),壳聚糖/纳米藻醇(NBG)和壳聚糖/ MBG / NBG涂层通过电泳沉积(EPD)沉积在砂砾喷砂和镜面抛光的Ti6Al4 V合金基材上。本研究讨论了基材的表面特性如何影响壳聚糖基薄复合涂层的3D表面形貌,面表粗糙度,形态和润湿性,同时通过砂喷砂调节表面特征。通过EDX,图像分析,接触角测量,3D表面形貌分析,FTIR分析和体外生物活性研究,SEM分析表征涂覆和未涂覆标本的表面。沉积在砂砾喷射的基材上的涂层呈现出变形的表面形貌,与镜面抛光表面相比较高的面表面粗糙度值和润湿性。建议沉积机制来阐明壳聚糖/ MBG涂层对砂砾喷射基底的沉积。在浸入SBF后在壳聚糖/ MBG涂层上形成磷灰石晶体三天。施加了一种鲁棒的图像分析方法,揭示了沉积MBG的分布和面积覆盖率,这证明了随着电压的增加而增加的MBG覆盖率。本研究表明,通过影响其表面形貌,粗糙度和润湿性来定制有机 - 无机复合涂层的表面特性,砂砾喷砂可能是有利的表面处理。

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