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离子液体-一种更环保的模板剂,与辣木叶提取物协同作用,绿色合成形貌改善的Ag-Au/ZnO 纳米结构及其抗菌和抗癌活性。

Ionic liquid - A greener templating agent with Justicia adhatoda plant extract assisted green synthesis of morphologically improved Ag-Au/ZnO nanostructure and it's antibacterial and anticancer activities.

机构信息

Advanced Green Chemistry Lab, Department of Industrial Chemistry, School of Chemical Sciences, Alagappa University, Karaikudi 630 003, Tamil Nadu, India.

The Key Laboratory of Advanced Textile Materials and Manufacturing Technology of the Ministry of Education, College of Materials and Textiles, Sci-Tech University, Hangzhou, Zhejiang, China.

出版信息

J Photochem Photobiol B. 2019 Sep;198:111559. doi: 10.1016/j.jphotobiol.2019.111559. Epub 2019 Jul 17.

Abstract

Metal and metal oxide nanoparticles (NPs) possess significant properties that are promising materials for biological applications. In this research work, we prepared ionic liquid assisted Ag-Au/ZnO NPs, using J.adhatoda leaves extract by hydrothermal method. Ionic liquids performed as a stabilizing and templating agent to improve the surface morphology of the synthesized Ag and Au doped ZnO NPs. The prepared ZnO, Ag-doped ZnO, Au doped ZnO, and AgAu doped ZnO NPs exhibit the average crystalline size of 36, 34, 32, and 25 nm and their band gap energy values are 3.36, 3.29, 3.17, and 2.98 eV respectively. The XRD and UV-DRS result shows that after doping of Au and Ag the ZnO crystalline size and band gap energy was decreased, which leads to enhanced the biomedical (antibacterial and anticancer) properties of AgAu doped ZnO NPs. The Raman active mode of A (LO) and A (TO) showed that the formation of lattice defects due to the Ag and Au doping in the ZnO crystalline plane to improve the Ag-Au/ZnO properties. SEM and TEM images revealed that the prepared AgAu doped ZnO NPs exhibits nano stick shape with particle size range from 20 to 25 nm. The EDX spectrum and elemental mapping results confirmed that Ag and Au atoms are doped and spread over the ZnO NPs. The corresponding SAED pattern also confirms the crystallinity of Ag-Au/ZnO NPs. Furthermore, the synthesized Ag-Au/ZnO NPs has been explored for its antibacterial and anticancer activities. It shows good antibacterial activity against E.coli and S.aureus bacteria. Additionally, the Ag-Au/ZnO NPs show excellent anticancer activity against the HeLa cancer cells. The excellent antibacterial and anticancer results prove that the bi-metal (Ag and Au) doping can enhance the biomedical properties of ZnO NPs. It will be a promising material in the biomedical field.

摘要

金属和金属氧化物纳米粒子(NPs)具有显著的性质,是生物应用的有前途的材料。在这项研究工作中,我们通过水热法使用 J. adhatoda 叶提取物制备了离子液体辅助的 Ag-Au/ZnO NPs。离子液体作为稳定和模板剂,以改善合成的 Ag 和 Au 掺杂 ZnO NPs 的表面形态。制备的 ZnO、Ag 掺杂 ZnO、Au 掺杂 ZnO 和 AgAu 掺杂 ZnO NPs 的平均结晶尺寸分别为 36、34、32 和 25nm,其带隙能值分别为 3.36、3.29、3.17 和 2.98eV。XRD 和 UV-DRS 结果表明,掺杂 Au 和 Ag 后,ZnO 的结晶尺寸和带隙能降低,从而增强了 AgAu 掺杂 ZnO NPs 的生物医学(抗菌和抗癌)性能。A(LO)和 A(TO)的 Raman 活性模式表明,由于 Ag 和 Au 在 ZnO 晶面中的掺杂,晶格缺陷的形成改善了 Ag-Au/ZnO 的性能。SEM 和 TEM 图像表明,制备的 AgAu 掺杂 ZnO NPs 呈纳米棒形状,粒径范围为 20 至 25nm。EDX 光谱和元素映射结果证实 Ag 和 Au 原子掺杂并分布在 ZnO NPs 上。相应的 SAED 模式也证实了 Ag-Au/ZnO NPs 的结晶度。此外,还研究了合成的 Ag-Au/ZnO NPs 的抗菌和抗癌活性。它对 E.coli 和 S.aureus 细菌表现出良好的抗菌活性。此外,Ag-Au/ZnO NPs 对 HeLa 癌细胞表现出优异的抗癌活性。优异的抗菌和抗癌结果证明,双金属(Ag 和 Au)掺杂可以增强 ZnO NPs 的生物医学性能。它将成为生物医学领域有前途的材料。

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