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首页> 外文期刊>RSC Advances >Pre-treatment and conditioning of chabazites followed by functionalization for making suitable additives used in antimicrobial ultra-fine powder coated surfaces
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Pre-treatment and conditioning of chabazites followed by functionalization for making suitable additives used in antimicrobial ultra-fine powder coated surfaces

机译:Chabazites的预处理和调理,然后是制备抗菌超细粉末涂层表面的合适添加剂的功能化

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摘要

Modified natural chabazites functionalized with silver-copper were used as an additive to develop antimicrobial powder coated surfaces. Two chabazites (named as LBC and LBN) were modified to enhance the ion-exchange properties by conditioning with sodium salt. The cation-exchange capacity (CEC) of those zeolites was improved from 3.31 meq. g(-1) and 3.46 meq. g(-1) to 3.77 meq. g(-1) and 4.09 meq. g(-1) respectively and they were used to produce silver-copper modified zeolites. In order to achieve durable and efficient antimicrobial additives, different combinations of these ions were used by varying the reaction time. These additives were used with a polyester resin system to produce ultrafine powder coated surfaces. Silver was utilized as an antimicrobial agent, whereas copper was used to prevent the reduction of silver during the coating process. All materials including the raw, modified and functionalized zeolites were characterized using XRD and TGA to observe the effect of treatment. ICP-OES was used for elemental analysis at every experimental stage. Color analysis proved that copper prevents silver from being reduced and maintains the color of the coated surface, which is comparable to the control surface. These coated surfaces have shown homogeneous antibacterial properties with excellent durability against E. coli for extended periods. Cell toxicity was evident from the LDH analysis of the fresh and used antimicrobial surfaces.
机译:用银铜官能化的改性天然chabazites用作添加抗微生物粉末涂覆表面的添加剂。修饰了两种Chabazites(命名为LBC和LBN)以通过用钠盐调节来增强离子交换性能。这些沸石的阳离子交换能力(CEC)从3.31 Meq改善。 g(-1)和3.46 meq。 g(-1)到3.77 meq。 g(-1)和4.09 meq。 P(-1)分别用于生产银铜改性沸石。为了实现耐用高效的抗微生物添加剂,通过改变反应时间来使用这些离子的不同组合。这些添加剂与聚酯树脂系统一起使用以产生超细粉末涂覆表面。银可用作抗微生物剂,而铜用于防止涂层过程中的银。使用XRD和TGA的所有材料包括原料,改性和官能化沸石的特征在于观察治疗的效果。 ICP-OES用于每个实验阶段的元素分析。彩色分析证明铜防止银减少并保持涂层表面的颜色,其与对照表面相当。这些涂覆的表面已经显示出均匀的抗菌性能,其延长时期具有优异的耐用性。从新鲜和使用的抗微生物表面的LDH分析中显而易见的细胞毒性。

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  • 来源
    《RSC Advances》 |2016年第91期|共10页
  • 作者单位

    Univ Western Ontario Dept Chem &

    Biochem Engn London ON N6A 3K7 Canada;

    Univ Western Ontario Dept Chem &

    Biochem Engn London ON N6A 3K7 Canada;

    Univ Western Ontario Dept Chem &

    Biochem Engn London ON N6A 3K7 Canada;

    Univ Western Ontario Dept Chem &

    Biochem Engn London ON N6A 3K7 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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