首页> 外文期刊>International Journal of Electrochemical Science >Influence of Fluoride and/or Bovine Albumin on Electrochemical Properties of Bare and ionic liquid- Coated Ni47Ti49Co4 Orthodontic archwires in artificial saliva solution
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Influence of Fluoride and/or Bovine Albumin on Electrochemical Properties of Bare and ionic liquid- Coated Ni47Ti49Co4 Orthodontic archwires in artificial saliva solution

机译:氟化物和/或牛白蛋白对人工唾液溶液中裸管液涂层Ni47Ti49Co4正畸弓丝电化学性质的影响

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Drawn biodegradable metallic wires are expected to degrade or to be resorbed within the body. Subjected to inorganic ions as fluoride corrosive ions and organic compound as proteins can affects corrosion and induce health complications. Accordingly, Surface modification materials are presently used as dental, orthopedic and cardiovascular applications. In this perspective, Ni47Ti49Co4 orthodontic brackets and archwires were firstly coated with ionic liquid (IL) and then immersed in fluoride and/or bovine albumin containing simulated saliva solution; the corrosion behavior was examined and compared with bare Ni47Ti49Co4 orthodontic archwires. The surface morphology before and after the immersion tests were analyzed while using scanning electron microscopy (SEM). The observations showed significant morphological changes with ionic liquid coat of the archwires surface. In addition, conventional electrochemical measurement methods, including cyclic voltammetry, corrosion potential and potentiodynamic measurements were also used to elucidate the effects of ions concentration, immersion time and coat stability on Ni47Ti49Co4. The results showed that either the NaF(0–0.1%) and/or the presence of albumin (0–0.05%) in simulated saliva solution had a considerable impact on the corrosion potential (Ecorr), corrosion rate (Icorr), and polarization resistance (Rp). The Icorr values increased with increasing the NaF concentration, but decreased with albumin addition in NaFcontaining saliva solution. Furthermore, the presence of ionic liquid coat, irrespective of the testing media, greatly enhances the corrosion resistance of the Ni47Ti49Co4 archwires.
机译:预期绘制的可生物降解的金属线降解或在体内被吸收。作为氟化物腐蚀离子和有机化合物作为蛋白质的无机离子可能影响腐蚀并诱导健康并发症。因此,表面改性材料目前用作牙科,整形外科和心血管应用。在这种观点中,首先将Ni47Ti49CO4正畸括号和弓丝用离子液体(IL)涂覆,然后浸入含有模拟唾液溶液的氟化物和/或牛白蛋白中;检查腐蚀行为并与裸露的Ni47Ti49Co4正畸弓丝进行比较。在使用扫描电子显微镜(SEM)的同时分析浸渍试验前后的表面形态。观察结果显示出与弓丝表面的离子液体涂层的显着形态变化。另外,常规的电化学测量方法,包括循环伏安法,腐蚀电位和电位测量的测量方法也用于阐明离子浓度,浸渍时间和涂层稳定性在Ni47Ti49CO4上的影响。结果表明,蓝蛋白酶(0-0.1%)和/或模拟唾液溶液中白蛋白(0-0.05%)的存在对腐蚀电位(Ecorr),腐蚀速率(ICorr)和极化具有相当大的影响抗性(RP)。随着NAFCORATINAL唾液溶液中的白蛋白添加而增加,ICORR值随着NAF浓度的增加而增加。此外,无论检测介质如何,都存在离子液体涂层,大大提高了Ni47Ti49Co4拱丝的耐腐蚀性。

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