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Formation of Gold Nanoparticles by Good's Buffers

机译:通过Good's缓冲液形成金纳米颗粒

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Gold nanoparticle formation was found from tetrachloroaurate(III)in the presence of Good's Buffers,such as 2-morpholinoethanesulfonic acid(MES)and 2-[4-(2-hydroxyethyl)-l-piperazinyl]ethanesulfonic acid(HEPES),which are used widely in laboratories for studies of analytical,inorganic,physical,and bio-chemistry as well as biology.The obtained gold nanoparticles were examined by Ultraviolet-Visible Spectroscopy(UV-vis),Dynamic Light Scattering(DLS)and Electrophoretic Light Scattering(ELS)in an aqueous system and by transmission electron microscopy(TEM)for particle morphologies.UV-vis spectra showed absorption maxima at approx530 and approx750 nm,depending on the buffer reagents and their concentration,pH,and ionic strength.The size and the surface zeta potential of the formed nanoparticles were 23 to 73 nm and-30 to-12 mV,respectively.The TEM pictures clearly indicated the formation of finely dispersed,chained,or aggregated gold nanoparticles,depending on the experimental conditions.The mechanism of gold nanoparticle formation was studied by the measurements of cyclic voltammetry(CV)and electron spin resonance(ESR).MES and HEPES showed a positive anodic peak at approximately +800 mV vs Ag/AgCI electrode,which indicated that these buffering agents have mild reducing ability.ESR results indicated the generation of nitrogen-centered cationic free radicals from these Good's Buffers in the presence of Au(III),resulting in the formation of gold nanoparticles.A reaction mechanism is proposed.
机译:在Good's缓冲液,例如2-吗啉代乙磺酸(MES)和2- [4-(2-羟乙基)-1-哌嗪基]乙磺酸(HEPES)的存在下,从四氯金酸酯(III)中发现了金纳米颗粒的形成。在实验室中广泛用于分析,无机,物理,生物化学以及生物学的研究。通过紫外-可见光谱(UV-vis),动态光散射(DLS)和电泳光散射(在水系统中并通过透射电子显微镜(TEM)观察颗粒形态.UV-vis光谱显示在约530 nm和约750 nm处有最大吸收,这取决于缓冲剂及其浓度,pH值和离子强度。形成的纳米粒子的表面zeta电位分别为23至73 nm和-30至12 mV.TEM照片清楚地表明,根据实验条件,形成了精细分散,链状或聚集的金纳米粒子。通过循环伏安法(CV)和电子自旋共振(ESR)的测量研究了金纳米颗粒形成的机理。MES和HEPES相对于Ag / AgCI电极在约+800 mV处显示出正阳极峰,表明这些缓冲剂具有ESR结果表明,在Au(III)存在下,由这些Good's缓冲液产生了以氮为中心的阳离子自由基,从而导致了金纳米颗粒的形成。提出了一种反应机理。

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