首页> 美国卫生研究院文献>Polymers >Anti-Bacterial and Anti-Fouling Capabilities of Poly(34-Ethylenedioxythiophene) Derivative Nanohybrid Coatings on SUS316L Stainless Steel by Electrochemical Polymerization
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Anti-Bacterial and Anti-Fouling Capabilities of Poly(34-Ethylenedioxythiophene) Derivative Nanohybrid Coatings on SUS316L Stainless Steel by Electrochemical Polymerization

机译:通过电化学聚合对SUS316L不锈钢聚(34-亚乙基氧基噻吩)衍生物纳米组织涂层的抗细菌和抗污染能力

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摘要

We have successfully fabricated poly(3,4-ethylenedioxythiophene) (PEDOT) derivative nanohybrid coatings on flexible SUS316L stainless steel by electrochemical polymerization, which can offer anti-fouling and anti-bacterial capabilities. PEDOT derivative nanohybrids were prepared from polystyrene sulfonates (PSS) and graphene oxide (GO) incorporated into a conducting polymer of PEDOT. Additionally, the negative charge of the PEDOT/GO substrate was further modified by poly-diallyldimethylammonium chloride (PDDA) to form a positively charged surface. These PEDOT derivative nanohybrid coatings could provide a straightforward means of controlling the surface energy, roughness, and charges with the addition of various derivatives in the electrochemical polymerization and electrostatically absorbed process. The characteristics of the PEDOT derivative nanohybrid coatings were evaluated by Raman spectroscopy, scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), atomic force microscopy (AFM), water contact angle, and surface potential (zeta potential). The results show that PEDOT/PSS and PEDOT/GO nanohybrid coatings exhibit excellent anti-fouling capability. Only 0.1% of bacteria can be adhered on the surface due to the lower surface roughness and negative charge surface by PEDOT/PSS and PEDOT/GO modification. Furthermore, the anti-bacterial capability (7 mm of inhibition zone) was observed after adding PDDA on the PEDOT/GO substrates, suggesting that the positive charge of the PEDOT/GO/PDDA substrate can effectively kill bacteria ( ). Given their anti-fouling and anti-bacterial capabilities, PEDOT derivative nanohybrid coatings have the potential to be applied to biomedical devices such as cardiovascular stents and surgical apparatus.
机译:我们通过电化学聚合成功地制造了柔性SUS316L不锈钢上的聚(3,4-乙腈)(PEDOT)衍生纳米型涂层,可提供防污和抗菌能力。将PEDOT衍生物纳米组织由聚苯乙烯磺酸盐(PSS)和石墨烯氧化物(GO)掺入PEDOT的导电聚合物中制备。另外,通过聚二烯丙基甲基氯化铵(PDDA)进一步改性PEDOT / GO衬底的负电荷以形成带正电荷的表面。这些PEDOT衍生物纳米混合物可以提供控制表面能,粗糙度和电荷的直接手段,并在电化学聚合中添加各种衍生物和静电吸收的方法。通过拉曼光谱法,扫描电子显微镜(SEM),X射线光电子能谱(XPS),原子力显微镜(AFM),水接触角和表面电位(Zeta电位)评估胶圈衍生物纳米喂涂层的特性。结果表明,PEDOT / PSS和PEDOT / GO纳米牛涂层表现出优异的防污能力。由于PEDOT / PSS和PEDOT / GO改性,由于下表面粗糙度和负电荷表面,因此只能粘附在表面上只有0.1%的细菌。此外,在PEDOT / GO衬底上添加PDDA后观察到抗细菌能力(7mm抑制区),表明PEDOT / GO / PDDA底物的正电荷可以有效地杀死细菌()。鉴于它们的防污染和抗菌能力,PEDOT衍生物纳米组合涂层具有施加到生物医学装置之类的诸如心血管支架和外科手术设备的可能性。

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