Department of Physics, Sri Venkateswara University, Tirupati 517502, India.
Department of Physics, Sri Venkateswara University, Tirupati 517502, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2014;121:164-72. doi: 10.1016/j.saa.2013.10.077. Epub 2013 Oct 25.
In this paper we report the green synthesis of silver nanoparticles (Ag NPs) using Tephrosia purpurea leaf extract. The biomolecules present in the leaf extract are responsible for the formation of Ag NPs and they found to play dual role of both reducing as well as capping agents. The high crystallinity of Ag NPs is evident from bright circular spot array of SAED pattern and diffraction peaks in XRD profile. The synthesized Ag NPs are found to be nearly spherical ones with size approximately ∼20 nm. FTIR spectrum evidences the presence of different functional groups of biomolecules participated in encapsulating Ag NPs and the possible mechanism of Ag NPs formation was also suggested. Appearance of yellow color and surface plasmon resonance (SPR) peak at 425 nm confirms the Ag NPs formation. PL spectra showed decrement in luminescence intensity at higher excitation wavelengths. Antimicrobial activity of Ag NPs showed better inhibitory activity towards Pseudomonas spp. and Penicillium spp. compared to other test pathogens using standard Kirby-Bauer disc diffusion assay.
本文报告了使用 Tephrosia purpurea 叶提取物绿色合成银纳米粒子(Ag NPs)的方法。叶提取物中存在的生物分子负责形成 Ag NPs,它们被发现同时起到还原剂和稳定剂的作用。高结晶度的 Ag NPs 从 SAED 图案的亮圆形斑点阵列和 XRD 图谱中的衍射峰中显而易见。合成的 Ag NPs 被发现是近似球形的,尺寸约为 ∼20 nm。FTIR 光谱证明了参与包裹 Ag NPs 的生物分子的不同官能团的存在,并提出了 Ag NPs 形成的可能机制。黄色的出现和 425nm 处的表面等离子体共振(SPR)峰证实了 Ag NPs 的形成。PL 光谱显示,在较高的激发波长下,发光强度降低。使用标准 Kirby-Bauer 圆盘扩散测定法,Ag NPs 的抗菌活性对 Pseudomonas spp. 和 Penicillium spp. 表现出比其他测试病原体更好的抑制活性。