以黄酮类化合物为还原剂在 AOT 反胶束中获得的纳米铜颗粒的特性分析

Javid Rashidi, L. S. Ageeva, E. A. Fatyanova, N. A. Borsch
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摘要

研究目的与传统还原剂--硼氢化钠和肼相比,对使用黄酮类化合物:槲皮素和芦丁在双(2-乙基己基)-磺基琥珀酸钠(AOT)的反向胶束中获得的纳米铜粒子进行表征。 方法。化学合成纳米铜粒子,分光光度法测定纳米铜粒子等离子体吸收带的最大值,电子透射显微镜。 结果利用黄酮类化合物(槲皮素和芦丁)还原铜离子,证实了在 Cu+2/AOT/isooctane 体系(AOT 为双-(2-乙基己基)-磺基琥珀酸钠,一种阴离子表面活性剂,可形成胶束外壳)中获得纳米铜粒子的可能性。在纳米粒子形成的过程中,电子光谱中出现了 400-440 纳米的 "等离子 "吸收带。在传统还原剂硼氢化钠的情况下,在(439 ± 3)纳米区域观察到吸收,这也可归因于纳米铜粒子的 "等离子带",但其强度非常低,这表明形成了少量的纳米铜粒子。使用透射电子显微镜。测定了纳米铜粒子的平均尺寸:槲皮素、芦丁和肼的平均粒径分别为 7.1、8.2 和 18.5 纳米。从根据电子透射显微镜结果绘制的直方图可以看出,使用黄酮类化合物作为还原剂可以减小纳米铜粒子的平均尺寸,缩小其尺寸分布。 结论使用黄酮类化合物槲皮素和芦丁作为还原剂,在异辛烷中的 AOT 反向胶束溶液中获得的纳米铜粒子的平均尺寸为 7-8 纳米,与使用肼还原相比,其尺寸分布更窄。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Copper nanoparticles obtained in AOT reverse micelles using flavonoids as a reducing agent
   Purpose of the study. To characterize copper nanoparticles obtained in reverse micelles of sodium bis-(2-ethylhexyl)-sulfosuccinate (AOT) using flavonoids: quercetin and rutin in comparison with traditional reducing agents - sodium borohydride and hydrazine.   Methods. Chemical synthesis of copper nanoparticles, spectrophotometry to determine the maximum of the plasmon absorption band of copper nanoparticles, electron transmission microscopy.   Results. The reduction of copper ions using flavonoids – quercetin and rutin – confirmed the possibility of obtaining copper nanoparticles in the Cu+2/AOT/isooctane system (AOT is sodium bis-(2-ethylhexyl)-sulfosuccinate, an anionic surfactant that forms the micelle shell). During the formation of nanoparticles, “plasmonic” absorption bands were observed in the electronic spectra in the region of 400-440 nm. In the case of the traditional reducing agent, sodium borohydride, absorption is observed in the region of (439 ± 3) nm, which can also be attributed to the “plasmonic band” of copper nanoparticles, but its intensity is very low, which indicates the formation of a small amount of copper nanoparticles. Using transmission electron microscopy. The average size of copper nanoparticles was determined: 7.1, 8.2 and 18.5 nm in the case of quercetin, rutin and hydrazine, respectively. From the histograms constructed from the results of electron transmission microscopy, it follows that the use of flavonoids as reducing agents makes it possible to reduce the average size of copper nanoparticles and narrow their size distribution.   Conclusion. Copper nanoparticles obtained in a reverse micellar solution of AOT in iso-octane using the flavonoids quercetin and rutin as a reducing agent have an average size of 7-8 nm and a narrower size distribution compared to reduction with hydrazine.
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