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Process engineering studies on gold nanoparticle formation via dynamic spectroscopic approach

机译:动态光谱法研究金纳米颗粒形成的过程工程研究

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The present paper reports a systematic study on kinetics of formation of metal nanoparticles from their precursors. Synthesis of gold nanoparticles (AuNPs) from chloroauric acid by the Turkevich method was selected as a model reaction where trisodium citrate acted as a reducing agent and stabilizer. Time-variant concentration of chloroauric acid was measured directly by monitoring UV spectroscopic absorbance at 212.5 nm and cross-checked by iodometric titration method. The reaction was suitably modeled by pseudo-first-order kinetics, and rate constant value [k = (7.93 +/- A 0.67) x 10(-3) s(-1)] at a fixed baseline condition was reported. Morphological studies on particle growth mechanism were done by atomic force microscopy (AFM). Effects of process variables-initial molar ratio of reactants (0.37-5.21), temperature (333-373 K), and pH (3.6-6.5)-on kinetic parameters were investigated. Fastest reaction rate and spherical particle symmetry were observed at an optimal reductant to precursor ratio of 1.33. From an Arrhenius plot of rate constant data, preexponential factor (A = 8.013 +/- A 0.896 mM s(-1)) and activation energy (E (a) = 21.69 +/- A 2.3 kJ mol(-1)) were calculated. A global kinetic equation for AuNP synthesis has been determined. Process conditions for synthesis of mature AuNPs with optical and morphological characteristics suitable for biomedical applications were identified.
机译:本文报道了对由其前体形成金属纳米颗粒的动力学的系统研究。通过Turkevich方法从氯金酸合成金纳米颗粒(AuNPs)被选择为模型反应,其中柠檬酸三钠充当还原剂和稳定剂。氯金酸的时变浓度直接通过监测212.5 nm处的紫外光谱吸光度来测量,并通过碘量滴定法进行交叉检查。通过拟一级动力学对反应进行适当建模,并报道了在固定基线条件下的速率常数[k =(7.93 +/- A 0.67)x 10(-3)s(-1)]。通过原子力显微镜(AFM)对颗粒生长机理进行了形态学研究。研究了工艺变量-反应物的初始摩尔比(0.37-5.21),温度(333-373 K)和pH(3.6-6.5)-对动力学参数的影响。在最佳还原剂与前体之比为1.33时,观察到最快的反应速率和球形颗粒对称性。根据速率常数数据的Arrhenius曲线,得出指数前因子(A = 8.013 +/- A 0.896 mM s(-1))和活化能(E(a)= 21.69 +/- A 2.3 kJ mol(-1))。计算。已经确定了用于AuNP合成的全局动力学方程。确定了具有适合生物医学应用的光学和形态学特征的成熟AuNPs合成的工艺条件。

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