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Synthesis and Application of Nanocomposite Reinforced with Decorated Multi Walled Carbon Nanotube with Luminescence Quantum Dots

机译:用发光量子点用装饰多壁碳纳米管加强的纳米复合材料的合成与应用

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Amidst the COVID-19 pandemic, environmental problems such as energy crisis, global warming, and contamination from pathogenic micro-organisms are still prevailed and strongly demanded progress in high- style="font-family:;" "="">performance>> style="font-family:;" "=""> energy storing and anti-microbial materials. The nanocomposites are materials >that have earned large interest owing to their promising applications for countering global issues related to sustainable energy and>> style="font-family:;" "=""> a>> style="font-family:;" "=""> flourishing environ>ment. Here, polypyrrole >> style="font-family:;" "="">coated>> style="font-family:;" "=""> hybrid nanocomposites of multi-walled>> style="font-family:;" "=""> carbon nanotube and cadmium sulfide quantum dots named MCP were synthe>sized using facile and low-cost in-situ oxidative polymerization method. Cha>racterization techniques confirmed the synthesis. Electrochemical studies showed that the nanocomposite >1-MCP showed an impressively higher super capacitance behavior in comparison to f-MWCNT, 7-MCP and 5-MCP. The improved performance of the nanocomposites was attributed mainly to the good conductivity of carbon nanotubes and polypyrrole, high surface area, and stability of the carbon nanotubes and the high electrocatalytic activity of the cadmium sulfide quantum dots. Owing to the synergistic effect of MWCNT, >CdS, and PPy the synthesized ternary nanocomposite also inhibited the growth and multiplication of tested bacteria such as S. aureus, and E. coli completely within 24 h. On the whole, the assimilated nanocomposite MCP opens promising aspects for the development of upcoming energy storage devices and as style="color:red;"> >> style="font-family:;" "="">an >> style="font-family:;" "="">antibacterial agent.
机译:在Covid-19大流行,诸如能源危机,全球变暖和来自致病性微生物的污染等环境问题仍然持续,并且在高<跨度风格=“Font-Family:”的强烈要求进展。 “=”“>性能 > > style =”font-family :;“”=“”>能量存储和抗微生物材料。纳米复合材料是材料,由于它们对可持续能量和 > > > style =“font-womain :;” “=”“> a > > style =”font-family :;“”=“”>蓬勃发展的环境> ment。在这里,聚吡咯 > > style =“font-womain :;” “=”“>涂层 > > style =”font-family :;“”=“”>多壁式混合纳米复合材料 > > style =“font-womain :;” “=”“>碳纳米管和硫化镉量子命名MCP点是SYNTHE <跨度>使用容易且低成本的原位的氧化聚合方法。查<跨度> racterization技术尺寸证实了合成。电化学研究表明,该纳米复合材料<跨度> 1-MCP的 相比,F-MWCNT,7-MCP和5显示出一个令人印象深刻更高超级电容行为-MCP。纳米复合材料的改善性能主要归因于碳纳米管和聚吡咯,高表面积和碳纳米管的高表面积和碳纳米管的稳定性和硫化镉量子点的高电催化活性的良好性能。由于协同效应MWCNT, CD和PPY合成的三元纳米复合材料还抑制了测试细菌的生长和繁殖,例如。AUREUS ,和 e。COLI 完全在24小时内。总的来说,同化的纳米复合MCP为DE开放了有希望的方面即将到来的能量存储设备和<跨度样式=“颜色:红色;”> > > style =“font-family: ;“”=“”> > > style =“font-womain :;” “=”“>抗菌剂。

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