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Silver-decorated gel-shell nanobeads: physicochemical characterization and evaluation of antibacterial properties

机译:银装饰的凝胶壳纳米珠:物理化学表征和抗菌性能评估

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摘要

We report on the synthesis of composite nanobeads with antibacterial properties. The particles consist of polystyrene cores that are surrounded by sulfonic gel shells with embedded silver nanoparticles. The nanocomposite beads are prepared by sulfonation of polystyrene particles followed by accumulation of silver ions in the shell layer and subsequent reduction with sodium borohydride. The resulting material has been characterized by electron microscopy, vibrational and X-ray photoelectron spectroscopy and several other experimental techniques. It was shown that sodium borohydride reduces silver ions embedded in the gel layer producing silver nanoparticles but also transforms a fraction of sulfonic groups in the polymer to moieties with sulfur in a lower oxidation state, likely thiols. It is hypothesized that the generated thiol groups are anchoring the nanoparticles in the gel shell of the nanobeads stabilizing the whole structure. The silver-decorated nanobeads appear to be a promising material with considerable antimicrobial activity and were tested against and . The determined minimum inhibitory (MIC) and minimum biofilm inhibitory (MBIC) concentrations are comparable to those of non-incorporated silver nanoparticles.
机译:我们报告具有抗菌性能的复合纳米珠的合成。颗粒由聚苯乙烯核组成,聚苯乙烯核被带有嵌入的银纳米粒子的磺酸凝胶壳包围。通过聚苯乙烯颗粒的磺化,然后在壳层中积累银离子,然后用硼氢化钠还原来制备纳米复合材料珠。所得材料已通过电子显微镜,振动和X射线光电子能谱以及其他几种实验技术进行了表征。结果表明,硼氢化钠可还原嵌在凝胶层中的银离子,从而生成纳米银颗粒,而且还可以将聚合物中的一部分磺酸基团转化为具有较低氧化态的硫(可能是硫醇)的部分。假设产生的硫醇基团将纳米颗粒锚定在纳米珠的凝胶壳中,从而稳定了整个结构。银装饰的纳米珠似乎是一种很有前途的材料,具有相当大的抗菌活性,并已针对和进行了测试。所确定的最小抑菌浓度(MIC)和最小生物膜抑菌浓度(MBIC)与未掺入的银纳米粒子相当。

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