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Green Synthesis of Gold Nanoparticles using Aqueous Ethanol Extract of Curcuma mangga Rhizomes as Reducing Agent

机译:使用乙醇素水溶液的金纳米粒子的绿色合成莪术根茎作为还原剂

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Green synthesis of gold nanoparticles (AuNPs) had been developed as an alternative to chemical and physical methods due to its simplicity, cost effectiveness and eco-friendliness. The high biocompatibility and biostability features of AuNPs have found importance in biomedical applications in recent years. In this study, aqueous ethanol extract of Curcuma mangga rhizomes which acts as reducing and stabilizing agent was used to synthesize stable AuNPs by bioreduction of chloroauric acid. The formation of AuNPs was highlighted by the color change of the suspension from light yellow to reddish purple. Time-evolution was monitored by UV-visible spectroscopy, while surface plasmon (SP) absorption band of the AuNPs suspension was observed at a maximum absorption of 540 nm. Hydrodynamic radii and size distribution of the AuNPs in the suspension were evaluated using dynamic light scattering (DLS) and zeta potential measurement demonstrated negative surface charge. The particle size was calculated in the range of 2-30 nm using High Resolution Transmission Electron Microscopy (HRTEM). The morphology and elemental composition were further determined by Field Effect Scanning Electron Microscopy (FESEM) and Energy Dispersive X-ray (EDX) spectroscopy. Fourier transform infrared (FTIR) spectroscopy meanwhile was used to confirm the presence of AuNPs and functional groups involved in the gold bio-reduction process. Influence of the volume of extract and concentration of gold (III) chloride trihydrate (HAuCl_4.3H_2O) on the synthesis of AuNPs were also investigated. The results obtained indicate potential optimization and functionalization of AuNPs for future applications in bionanotechnology especially in the field of medicine.
机译:由于其简单性,成本效益和生态友好,已经开发了金纳米颗粒(AUNP)的绿色合成作为化学和物理方法的替代方案。近年来,AUNP的高生物相容性和生物稳定性特征在生物医学应用中发现了重要性。在该研究中,使用作为还原和稳定剂的姜黄素水溶液提取物,其通过氯龙酸的生物诱导来合成稳定的aUnps。悬浮液从淡黄色到红色紫色的颜色变化突出了剖腹产。通过UV可见光谱监测时间进化,而在最大吸收540nm的最大吸收中观察到AuNPS悬浮液的表面等离子体(SP)吸收带。使用动态光散射(DLS)评估悬浮液中的腔体的流体动力半径和尺寸分布,并Zeta电位测量显示出负面电荷。使用高分辨率透射电子显微镜(HRTEM)计算粒度在2-30nm的范围内。通过场效应扫描电子显微镜(FESEM)和能量分散X射线(EDX)光谱进一步确定形态和元素组合物。同时使用傅里叶变换红外(FTIR)光谱法确认存在于金生物还原过程中的AUNP和官能团的存在。还研究了提取物和浓度的浓度和浓度的影响(Haucl_4.3h_2o)对肛肠血症合成的影响。得到的结果表明,对于未来的Bionanootechnology申请,尤其是在医学领域的潜在优化和功能化。

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