"Green Synthesis and Characterization of Silver Nano- conjugates using Some Common Medicinal Weeds Leaf Aqueous Extracts"

P. Ghosh, Moumita Saha, Subhadra Nandi, Titav Sengupta, Sohini Kulavi, Shaktijit Das, Sirshendu Chatterjee
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引用次数: 4

Abstract

Nanotechnology is one of the most rapidly progressing fields of technology, and it has opened up many new frontiers of research for modern society. It deals with the nanoparticles having a size of 1-100 nm in one dimension. These nano-conjugates can be prepared easily by different chemical, physical, and biological approaches. However, the green synthesis approach is the most favoured one because this method is more natural, less hazardous, and eco-friendly. Our present study gives an overview of some common medicinal weeds Heliotropium indicum (Family: Boraginaceae), Tridax procumbens (Family: Asteraceae), Cleome rutidosperma (Family: Cleomaceae), Commelina benghalensis (Family: Commelinaceae), and Euphorbia hirta (Family: Euphorbiaceae) leaf aqueous extract mediated green synthesis of silver nano-conjugates. After synthesis, silver nanoparticles were examined by using advanced characterization techniques, including UV-Vis Spectrophotometer, DLS, and FT-IR. The UV-Vis absorption spectroscopy results highlighted a single peak within the range of 402-429 nm for all the five nanoconjugates. The DLS data highlighted that the particle size of the nano-conjugates ranges between 18.17 nm105.7 nm. Whereas the similarities between the FT-IR data of the sample and nanoparticle confirm the conjugation of different bioactive compounds of the aqueous leaf extracts with the metal nanoparticles.
《几种常用药用杂草叶水提物纳米银缀合物的绿色合成及表征》
纳米技术是发展最为迅速的技术领域之一,它为现代社会开辟了许多新的研究领域。它处理一维尺寸为1-100纳米的纳米颗粒。这些纳米缀合物可以很容易地通过不同的化学,物理和生物方法制备。然而,绿色合成方法是最受欢迎的一种方法,因为这种方法更自然,危害更小,更环保。本研究综述了一些常见的药用杂草:梧桐(Boraginaceae)、原藜(Tridax proumbens Family: Asteraceae)、山毛榉(Cleomaceae)、山毛榉(Commelina benghalensis Family: Commelinaceae)和大戟(euphorbita Family: Euphorbiaceae)叶片水提物介导的银纳米缀合物的绿色合成。合成后,使用先进的表征技术,包括紫外可见分光光度计,DLS和FT-IR对银纳米颗粒进行了检测。紫外可见吸收光谱结果表明,5种纳米缀合物在402 ~ 429 nm范围内均有一个单峰。DLS数据显示,纳米共轭物的粒径范围在18.17 nm ~ 105.7 nm之间。而样品和纳米颗粒的FT-IR数据之间的相似性证实了不同的生物活性化合物与金属纳米颗粒的结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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