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Efficient Degradation of Methylene Blue Dye and Antibacterial Performance of Shape Controlled RuO2 Nanocomposites

机译:甲基蓝染料的有效降解和形状控制的RUO2纳米复合材料的抗菌性能

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Arising global health problems have drawn significant interest in the researcher’s community to fabricate multifunctional nanocomposites that could directly or indirectly treat polluted water. Herein, a simple but cost-effective method is proposed for the fabrication of flower-shaped RuO2 NPs (nanoparticles) on SWCNTs (single-walled carbon nanotubes). The synthesized composite acts as a one-stop solution for eliminating harmful dyes and pathogens from potable water. The structural, morphological, and chemical compositions of RuO2/SWCNT were carefully investigated and the observations revealed that crystalline RuO2 NPs possessing quantum dot range sizes were homogeneously decorated on the inner as well as exterior cavities of activated SWCNTs. The nanocomposite proved as an efficient photocatalyst against MB (methylene blue) dye and colourless phenol. The photocatalytic degradation efficiencies of RuO2, SWCNT, and RuO2/SWCNT is 57%, 21%, and 92.6% respectively against MB dye. Colourless phenol degradation and scavenging studies were performed to rule out the photosensitization effect and examine the role of active species during photodegradation respectively. Moreover, when the residual remains of the composite after degradation experi- ments were used as an antibacterial agent, it proved most lethal against E. coli and L. monocytogenes with 13.7?0.45 and 12.5?0.15 mm diameter of ZOI respectively at rather low doses (0.07 mg/mL). Finally, the synthesized composite could reduce the industrial cost of application and also influence the engineering and logical fabrication of nanocomposites for their reusability and multifunctional proficiencies.
机译:全球健康问题引起了研究人员社区的重大兴趣,以制造可直接或间接处理污染水的多功能纳米复合材料。本文中,提出了一种简单但具有成本效益的方法,用于在SWCNT(单壁碳纳米管)上制造花形的RUO2 NP(纳米颗粒)。合成的复合材料是消除饮用水中有害染料和病原体的一站式解决方案。仔细研究了RUO2/SWCNT的结构,形态和化学组成,观察结果表明,具有量子点范围尺寸的结晶RUO2 NP在内部和激活SWCNT的外部腔体上均匀地装饰。纳米复合材料被证明是针对MB(亚甲基蓝)染料和无色苯酚的有效光催化剂。 RUO2,SWCNT和RUO2/SWCNT的光催化降解效率分别为MB染料的57%,21%和92.6%。进行了无色苯酚降解和清除研究,以排除光敏效果,并分别检查活性物种在光降解过程中的作用。此外,当使用降解实验后复合材料的残留残留物用作抗菌剂时,它证明对大肠杆菌和单核细胞增生乳杆菌的杀伤性最高,分别为13.7?0.45?0.45和12.5?0.15 mm。 (0.07 mg/ml)。最后,合成的复合材料可以降低应用的工业成本,并影响纳米复合材料的工程和逻辑制造,以使其可重复使用和多功能能力。

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