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Synthesis of phenolic precursor-based porous carbon beads in situ dispersed with copper-silver bimetal nanoparticles for antibacterial applications

机译:原位分散铜-银双金属纳米颗粒的酚类前体基多孔碳珠的合成及其抗菌应用

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Copper (Cu) and silver (Ag) bimetal-dispersed polymeric beads (~0.7 mm) were synthesized by suspension polymerization using phenol and formaldehyde monomers. The Cu:Ag bimetal nanoparticles (Nps) were incorporated into the polymeric matrix at the incipience of gel formation during polymerization using an anionic surfactant. The prepared bimetal-doped polymeric beads were carbonized, activated using steam, and reduced in a hydrogen atmosphere to produce metal Nps-doped porous carbon beads. The prepared bimetal (Cu and Ag) Nps-doped beads exhibited significantly larger anti-bacterial activities than single-(Cu or Ag) metal-doped beads for both gram-positive Staphylococcus aureus and gram-negative Escherichia coli bacteria. The prepared materials contained the total optimized amounts of Cu and Ag. These amounts were smaller (approximately half) than the amount of single metal (Cu or Ag) required for preparing single-metal-doped beads. Although Cu Nps exhibit lesser antibacterial activity than Ag Nps, it enhanced the porosity of the beads. The prepared bimetal beads remained effective for 120 h, completely inhibiting the bacterial growth, and therefore, they are potential antibacterial agents for water purification.
机译:铜(Cu)和银(Ag)双金属分散的聚合物珠粒(〜0.7 mm)通过使用苯酚和甲醛单体的悬浮聚合法合成。使用阴离子表面活性剂在聚合过程中开始形成凝胶时,将Cu:Ag双金属纳米颗粒(Nps)掺入聚合物基质中。将制备的双金属掺杂的聚合物珠粒碳化,使用蒸汽活化,并在氢气氛中还原以产生金属Nps掺杂的多孔碳珠粒。对于革兰氏阳性金黄色葡萄球菌和革兰氏阴性大肠埃希氏菌,制备的双金属(铜和银)Nps掺杂的小珠均表现出比单金属(铜或银)掺杂的小珠显着更大的抗菌活性。所制备的材料包含总优化量的Cu和Ag。这些量比制备单金属掺杂的珠粒所需的单金属(Cu或Ag)的量小(约一半)。尽管Cu Nps的抗菌活性低于Ag Nps,但它增强了微珠的孔隙率。制备的双金属珠保持有效120小时,完全抑制细菌生长,因此,它们是用于水净化的潜在抗菌剂。

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