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Mechanistic investigation of phytochemicals involved in green synthesis of gold nanoparticles using aqueous Elaeis guineensis leaves extract: Role of phenolic compounds and flavonoids

机译:用Elaeisguineensis叶片提取物的金纳米粒子绿色合成植物化工学的机械研究:酚类化合物和黄酮类化合物的作用

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Phytosynthesis of gold nanoparticles (AuNPs) has achieved an indispensable significance due to the diverse roles played by biomolecules in directing the physiochemical characteristics of biosynthesized nanoparticles. Therefore, the precise identification of key bioactive compounds involved in producing AuNPs is vital to control their tunable characteristics for potential applications. Herein, qualitative and quantitative determination of key biocompounds contributing to the formation of AuNPs using aqueous Elaeis guineensis leaves extract is reported. Moreover, roles of phenolic compounds and flavonoids in reduction of Au3+ and stabilization of AuNPs have been elucidated by establishing a reaction mechanism. Fourier-transform infrared spectroscopy (FTIR) showed shifting of OH stretching vibrations toward longer wavenumbers and CO toward shorter wavenumbers due to involvement of polyphenolic compounds in biosynthesis and oxidation of polyphenolic into carboxylic compounds, respectively, which cape nanoparticles to inhibit the aggregation. Congruently, pyrolysis-gas chromatography-mass spectrometry revealed the major contribution of polyphenolic compounds in the synthesis of AuNPs, which was further endorsed by reduction of total phenolic and total flavonoids contents from 48.08 +/- 1.98 to 9.59 +/- 0.92 mg GAE/g and 32.02 +/- 1.31 to 13.8 +/- 0.97 mg CE/g within 60 Min, respectively. Based on experimental results, reaction mechanism explained the roles of phenolic compounds and flavonoids in producing spherical-shaped AuNPs.
机译:金纳米颗粒(AUNP)的植物合成已经实现了一种不可或缺的意义,因为生物分子在引导生物合成纳米粒子的生理化学特征方面发挥了不同的作用。因此,涉及产生AUNP的关键生物活性化合物的精确鉴定对于控制其可调节特性的潜在应用至关重要。据报道,据报道,据报道,据报道,据报道,综合生物化合物的定性和定量测定促进使用ELAEIS水性叶片叶提取物的形成αUNP。此外,通过建立反应机理,阐明了酚类化合物和黄酮类化合物在减少Au3 +和抗血管稳定中的作用。傅里叶变换红外光谱(FTIR)显示出孔延伸振动的换向较长的波数,并且由于多酚化合物在生物合成中的参与和多酚氧化成羧酸化合物的氧化而达到较短的波数,其己酰纳米粒子抑制聚集体。通量热解 - 气相色谱 - 质谱表明,通过从48.08 +/- 1.98至9.59 +/- 0.92 mg gae的总酚类和总黄酮含量的整体酚类和总黄酮含量的降低,进一步认同的多酚化合物的主要贡献。 G和32.02 +/- 1.31至13.8 +/- 0.97 mg CE / g分别在60分钟内。基于实验结果,反应机制解释了酚类化合物和类黄酮在制备球形AUnps中的作用。

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