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Specific features of the preparation of AgI nanocrystals in reverse micelles of aerosol OT

机译:OT反向胶束中制备AgI纳米晶体的特征

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It was shown that the interrelation between the mean size of AgI nanocrystals prepared in the water pools of reverse micelles as a result of reaction between KI and AgNO3 and the pool diameter has a complex pattern and is determined mainly by the stability of micellar system. Microemulsions with small micelles (the pool diameter is up to 2 nm) are stable due to the presence of micelle oligomeric phase, regardless of the effect of water structurization in pools. In microemulsions with pool diameters from 2 to 6 nm, such an oligomeric phase is absent that leads to the avalanche-like growth of nanocrystals due to their aggregation in organic phase. As the diameter of micelle pools increases above 6 nm, the microemulsions are stabilized because of the limited dimensions of structured water layer and the deceleration of intermicellar exchange. When the excess amount of KI is added to microemulsion, the screening shell of ions is formed around nanocrystals, thus complicating the formation of icelike structure of water in micelle pools.
机译:结果表明,由KI和AgNO3反应产生的反胶束水池中制备的AgI纳米晶体的平均尺寸与池直径之间的相互关系具有复杂的规律,并且主要由胶束体系的稳定性决定。由于存在胶束低聚相,具有小胶束的微乳液(池直径最大为2 nm)是稳定的,而与池中水结构化的影响无关。在池直径为2至6 nm的微乳液中,不存在这种低聚相,由于其在有机相中的聚集,导致纳米晶体的雪崩状生长。当胶束池的直径增加到6 nm以上时,由于结构化水层的尺寸有限以及胶束间交换的减速,微乳剂得以稳定。当将过量的KI添加到微乳液中时,离子的筛选壳会在纳米晶体周围形成,从而使胶束池中水的冰状结构形成变得复杂。

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