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Effect of temperature on the synthesis of Centella asiatica flavonoids extract-mediated gold nanoparticles: UV-visible spectra analyses

机译:温度对Centella Asiatica Flavonoids提取物介导的金纳米颗粒的影响:UV可见光谱分析

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Many plants have been reported for the nanosynthesis of metal nanoparticles by virtue of the reducing potential of their bioactive compounds. Centella asiatica (CA) is one of the widely used plants, as claimed by traditional system of medicine, to have its positive effects on a variety of ailments. However, no research evidence indicates the synthesis of CA flavonoids extract (CACrF)-mediated gold nanoparticles (GNPs). In the present study, the initial synthesis of gold nanoparticles (GNPs) mediated by Centella asiatica crude flavonoids extract (CACrF) has been discussed. The protocol involves a one-step, non-toxic and cost effective procedure based on green nanotechnology avoiding the use of any synthetic chemicals potentially harmful for environment and biomedical applications. The CACrF was reacted with gold chloride, trihydrate (HAuCl4.3H2O) for the synthesis of GNPs. The reaction was carried out at room temperatures. The formation of GNPs was visually observed by a change in the color of solution from pale yellow to ruby pink. UV-visible (UV-vis) spectrophotomteric analysis was performed to verify the synthesis of CACrF-mediated GNPs. As a function of time, the surface plasmon resonance (SPR) behavior of GNPs was evaluated to study the reaction kinetics and the UV-vis spectra were recorded after every 10 minutes up to 70 minutes. A single peak at 542 nm with absorbance of 0.475±0.039 indicated the synthesis of GNPs.
机译:据报道,许多植物通过其生物活性化合物的潜力而逐个金属纳米颗粒的纳米合成。 Centella Asiatica(CA)是由传统医学系统所申请的广泛使用的植物之一,对各种疾病产生积极影响。然而,没有研究证据表明Ca类黄酮提取物(CACRF)介导的金纳米颗粒(GNP)的合成。在本研究中,通过积雪介导的金纳米颗粒(的GNP)的初始合成草黄酮类化合物的粗提取物(CACrF)进行了讨论。该方案涉及基于绿色纳米技术的一步,无毒和成本效益的程序,避免使用任何对环境和生物医学应用有害的任何合成化学品。 CACRF与金氯化物,三水合物(HauCl4.3H 2 O)反应,用于合成GNPS。反应在室温下进行。通过从浅黄色至红宝石粉红色的溶液颜色的变化来视觉观察GNP的形成。进行UV可见(UV-Vis)分光光度分析以验证CaCRF介导的GNP的合成。作为时间的函数,评价GNP的表面等离子体共振(SPR)行为以研究反应动力学,并在每10分钟后记录UV-Vis光谱,最长可达70分钟。吸光度为0.475±0.039的542nm处的单峰表明了GNP的合成。

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