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Investigation of Gold and Silver Nanoparticles as Acid-base pH Indicators and Their Transition pH Ranges

机译:金和银纳米颗粒作为酸碱度pH指示剂及其过渡pH范围的研究

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摘要

Monitoring of pH, especially under highly alkaline conditions, is necessary in various processes in the industrial, biotechnological, agricultural, and environmental fields. However, few pH indicators that can function at highly alkaline levels are available, and most of which are organic-based pH indicators. Several years ago, it was reported that gold nanoparticles prepared using trisodium citrate dihydrate were rapidly aggregated at pH values higher than similar to 12.7. A shift of surface plasmon resonance for such aggregated gold nanoparticles can be applied to pH indicators, allowing for the substitution of traditional organic-based pH indicators. The most important characteristic of pH indicators is the transition pH range. Herein, gold and silver nanoparticles are prepared using different reducing agents, and their transition pH ranges are examined. The results showed that all nanoparticles prepared in this study exhibit similar transition pH ranges spanning 11.9-13.0, regardless of the nanoparticle material, reducing agents, and concentration.
机译:在工业,生物技术,农业和环境领域的各种过程中,特别是在高碱性条件下,pH值的监测是必要的。但是,几乎没有可以在高碱性水平下起作用的pH指示剂,而大多数是基于有机物的pH指示剂。几年前,据报道,使用柠檬酸三钠二水合物制备的金纳米颗粒在高于12.7的pH值下迅速聚集。这种聚集的金纳米颗粒的表面等离振子共振的偏移可以应用于pH指示剂,从而可以替代传统的基于有机物的pH指示剂。 pH指示剂最重要的特征是过渡pH范围。在此,使用不同的还原剂制备金和银纳米颗粒,并检查其过渡pH范围。结果表明,无论纳米颗粒的材料,还原剂和浓度如何,本研究中制备的所有纳米颗粒均显示相似的过渡pH范围,跨度为11.9-13.0。

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