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首页> 外文期刊>CERAMICS INTERNATIONAL >Comparative investigation of antibacterial yet biocompatible Ag-doped multicomponent coatings obtained by pulsed electrospark deposition and its combination with ion implantation
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Comparative investigation of antibacterial yet biocompatible Ag-doped multicomponent coatings obtained by pulsed electrospark deposition and its combination with ion implantation

机译:通过脉冲电动扫描沉积获得的抗菌又生物相容性Ag掺杂多组分涂层的比较研究及其与离子注入的组合

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摘要

The aim of this work is to obtain antibacterial yet biocompatible coatings using pulsed electrospark deposition (PED). For this purpose new composite electrodes were fabricated from reaction mixtures Ti-C-20%Fe10%Ca-3(PO4)(2)-3.4%Mg-X%Ag with different amount of antibacterial component (X = 0, 0.5, 1.0, 1.5 and 2.0 at % of Ag) using self-propagating high-temperature synthesis method. The electrodes consisted of TiC grains surrounded by TiFe2 and TiFeP intermetallic matrix, CaO and MgO inclusions, and Ag-based phase. The influence of Ag content on the electrode mass transfer kinetics was studied by comparing the total substrate weight gain and electrode mass loss during PED. The structure, elemental composition, and surface roughness of coatings were studied by means of X-ray diffraction, scanning electron microscopy, and optical profilometry. The coatings were characterized in terms of Ag+ ion release, mechanical and electrochemical properties, as well as biocompatibility. The antibacterial characteristics of Ag-doped PED coatings were compared with those obtained by PED using Ag-free electrode and then implanted with Ag+ ions. The results indicated that an increase in the Ag content in electrode leads to a decrease in electrode erosion and substrate weight gain, but the efficiency of the PED process increases. Doping with a small amount of Ag ( = 1 at%) resulted in 100% antibacterial effect against both gram-positive S. aureus and gram-negative E. coll. bacteria. In addition, the dynamics of MC3T3-E1 cell proliferation on the surface of PED coatings with 0.6-0.7 at% of Ag was similar to that in control samples, hereby indicating their biocompatibility. The coating biological characteristics were discussed based on the results of Ag ion release and electrochemical tests.
机译:这项工作的目的是使用脉冲电溅沉积(PED)获得抗菌又生物相容性涂层。为此目的,使用不同量的抗菌组分(x = 0,0.5,1.0 Ag的1.5和2.0at%Ag)使用自展开高温合成方法。电极由Tife2和Tifep金属间基质,CaO和MgO夹杂物围绕的Tic颗粒组成,CaO和MgO夹杂物和基于Ag的相。通过比较PED期间的总基板重量增益和电极质量损失,研究了AG含量对电极传质动力学的影响。通过X射线衍射,扫描电子显微镜和光学轮廓测定,研究了涂层的结构,元素组合物和表面粗糙度。涂层以Ag +离子释放,机械和电化学性能以及生物相容性的特征在于。将Ag掺杂的Ped涂层的抗菌特性与通过使用无坯电极的PED获得的抗菌特性进行比较,然后用Ag +离子注入。结果表明,电极中的Ag含量的增加导致电极腐蚀和基板重量增益的降低,但是PED过程的效率增加。掺杂少量的Ag(& = 1at%)导致克刺弧菌和革兰氏阴性橡胶的100%抗菌作用。细菌。此外,在Ag的0.6-0.7at%的PED涂层表面上MC3T3-E1细胞增殖的动态与对照样品中的0.6-0.7%相似,因此指示它们的生物相容性。基于Ag离子释放和电化学测试的结果讨论了涂层生物学特征。

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