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Highly efficient visible light photocatalytic and antibacterial performance of PVP capped Cd:Ag: ZnO photocatalyst nanocomposites

机译:PVP封端的Cd:Ag:ZnO光催化剂纳米复合材料的高效可见光光催化和抗菌性能

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The PVP capped Cd and Ag-doped ZnO (Cd:Ag:ZnO: PVP) multifunctional nanocomposites for photocatalytic applications have been synthesized by facile microwave aided precipitation way. The synthesized samples were characterized by XRD, SEM mapping, EDX, HR-TEM, XPS, UV-Vis DR spectroscopy, PL spectroscopy, BET, EIS analysis along with their chief photocatalytic and antibacterial activities. XRD and HRTEM analyses describe the moral crystalline nature. The binding energy and the elements presents were confirmed by XPS analysis. The degradation rate of Cd: Ag: ZnO: PVP nanocomposite was 4.7 times higher than that of undoped ZnO by degrading methylene blue (MB) dye within 120 min under visible-light exposures. Besides, the Cd:Ag:ZnO: PVP nanocomposites have good cycling stability up to five successive cycles of photocatalytic degradation. EIS responses show the improved photocatalytic properties and more charge carrier's ability due to the large surface area (94.51 cm(3) g(-1)). The improved antibacterial activities were projected by Cd:Ag:ZnO: PVP nanocomposites, hence it can be used for environmental remediation application.
机译:通过简便的微波辅助沉淀法合成了PVP包覆的Cd和Ag掺杂的ZnO(Cd:Ag:ZnO:PVP)多功能纳米复合材料。合成的样品通过XRD,SEM图,EDX,HR-TEM,XPS,UV-Vis DR光谱,PL光谱,BET,EIS分析进行表征,并具有主要的光催化和抗菌活性。 XRD和HRTEM分析描述了道德结晶的本质。通过XPS分析证实了结合能和存在的元素。通过在可见光照射下120分钟内降解亚甲基蓝(MB)染料,Cd:Ag:ZnO:PVP纳米复合材料的降解速率比未掺杂的ZnO高4.7倍。此外,Cd:Ag:ZnO:PVP纳米复合材料具有良好的循环稳定性,最多可以连续五个光催化降解循环。 EIS响应显示由于较大的表面积(94.51 cm(3)g(-1))而具有改进的光催化性能和更多的载流子能力。 Cd:Ag:ZnO:PVP纳米复合材料具有较好的抗菌活性,可用于环境修复。

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