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Size Selective Green Synthesis of Silver and Gold Nanoparticles: Enhanced Antibacterial Efficacy of Resveratrol Capped Silver Sol

机译:银和金纳米粒子的尺寸选择性绿色合成:白藜芦醇封端的银溶胶的增强抗菌功效

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In view of potential biomedical application of the noble metal nanoparticles, we report a size controlled yet simple and green synthesis of resveratrol stabilized silver and gold nanoparticles having low polydispersity of size. Here, resveratrol plays two simultaneous roles, reducing the metal ions and providing efficient capping of the small nanoparticles. This gives rise to specific size of silver and gold nanoparticles at specific ratios of metal to resveratrol. The particles have been characterized by XRD and transmission electron microscopy. The nanoparticle sols are stable for months. The UV Visible absorption spectra of the silver sol show the plasmon peak of spherical nanoparticles, presence of which is further reflected in the TEM images. Size of the silver particles obtained is in between 11 to 21 nm depending on the ratio of resveratrol to metal ion used. Resveratrol capped silver nanoparticles exhibit high antibacterial activity against Gram negative wild type E coli BW (25113). The minimum inhibitory concentration (MIC) of nano-silver against the bacterium has been estimated to be 6.48 mu g/ml, which is significantly lower than that reported in some earlier as well as recent publications. Reaction of gold ions with resveratrol, on the other hand, produces gold nanoparticles of sizes varying from 7 to 29 nm at different ratios of resveratrol to the metal ions. Particles with higher size and aspect ratio are formed at lower concentration of the capping agent whereas particles with very small size and pseudo-spherical morphology are formed at higher capping concentration. Difference in the formation kinetics of silver and gold nanoparticles has been attributed to the different growth mechanisms in the two cases. Possible modes of anchorage of resveratrol to silver nanoparticles have been investigated using surface enhanced resonance Raman spectroscopy (SERS) which shows that the silver nanoparticles are capped by resveratrol molecule primarily through O-Ag linkages of the p-OH aromatic ring. This, in turn, demonstrates the feasibility of using these nanoparticles as SERS templates.
机译:考虑到贵金属纳米颗粒的潜在生物医学应用,我们报告了大小可控但简单且绿色合成的白藜芦醇稳定的银和金纳米颗粒,具有低的多分散性。在这里,白藜芦醇同时扮演着两个角色,即还原金属离子并有效覆盖小纳米颗粒。这以金属与白藜芦醇的特定比例产生了银和金纳米颗粒的特定尺寸。通过XRD和透射电子显微镜对颗粒进行了表征。纳米粒子溶胶稳定数月。银溶胶的紫外可见吸收光谱显示球形纳米颗粒的等离激元峰,其存在进一步反映在TEM图像中。所获得的银颗粒的尺寸在11至21nm之间,这取决于所使用的白藜芦醇与金属离子的比例。白藜芦醇封端的银纳米颗粒对革兰氏阴性野生型大肠杆菌BW(25113)具有很高的抗菌活性。纳米银对细菌的最小抑菌浓度(MIC)估计为6.48微克/毫升,这明显低于一些较早和最近的出版物中报道的浓度。另一方面,金离子与白藜芦醇的反应在白藜芦醇与金属离子的不同比例下产生尺寸为7至29 nm的金纳米颗粒。具有较低尺寸和长宽比的颗粒是在较低浓度的封端剂下形成的,而具有非常小的尺寸和准球形形态的颗粒是在较高浓度的封端剂下形成的。银和金纳米颗粒形成动力学的差异已归因于两种情况下的不同生长机理。已经使用表面增强共振拉曼光谱法(SERS)研究了白藜芦醇对银纳米颗粒的锚固的可能模式,其显示银纳米颗粒主要通过对羟基芳族环的O-Ag键被白藜芦醇分子封端。反过来,这证明了使用这些纳米颗粒作为SERS模板的可行性。

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