首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Long-Term Stability of n-Alkane-in-Water Pickering Nanoemulsions: Effect of Aqueous Solubility of Droplet Phase on Ostwald Ripening
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Long-Term Stability of n-Alkane-in-Water Pickering Nanoemulsions: Effect of Aqueous Solubility of Droplet Phase on Ostwald Ripening

机译:N-烷烃内酸洗纳米乳液的长期稳定性:液滴相水溶性对Ostwald成熟的影响

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High-pressure microfluidization is used to prepare a series of oil-in-water Pickering nanoemulsions using sterically-stabilized diblock copolymer nanoparticles as the Pickering emulsifier. The droplet phase comprised either n-octane, n-decane, n-dodecane, or n-tetradecane. This series of oils enabled the effect of aqueous solubility on Ostwald ripening to be studied, which is the primary instability mechanism for such nanoemulsions. Analytical centrifugation (LUMiSizer instrument) was used to evaluate the long-term stability of these Pickering nanoemulsions over time scales of weeks/months. This technique enables convenient quantification of the fraction of growing oil droplets and confirmed that using n-octane (aqueous solubility = 0.66 mg dm(-3) at 20 degrees C) leads to instability even over relatively short time periods. However, using n-tetradecane (aqueous solubility = 0.386 mu g dm(-3) at 20 degrees C) leads to significantly improved long-term stability with respect to Ostwald ripening, with all droplets remaining below 1 mu m diameter after 6 weeks storage at 20 degrees C. In the case of n-dodecane, the long-term stability of these new copolymer-stabilized Pickering nanoemulsions is significantly better than the silica-stabilized Pickering nanoemulsions reported in the literature by Persson et al. (Colloids Surf., A, 2014, 459, 48-57). This is attributed to a much greater interfacial yield stress for the former system, as recently described in the literature (see P. J. Betramo et al. Proc. Natl. Acad. Sci. U.S.A., 2017, 114, 10373-10378).
机译:高压微流体用于制备一种使用空质稳定的二嵌段共聚物纳米颗粒作为皮克林乳化剂制备一系列油内皮纳米乳液。液滴相包含正辛烷,N-癸烷,N-十二烷或正癸烷。该系列油使得水溶性溶解对待研究的骨瓦氏溶解作用,这是这种纳米乳液的初级不稳定性机制。使用分析离心(Lumisizer仪器)用于评估这些皮克林纳米乳液的长期稳定性随时间数周/月的时间尺度。该技术能够方便地定量生长油滴的级分,并确认使用N-辛烷值(溶解度= 0.66mg dm(-3)在20℃)中,即使在相对较短的时间内也不会不稳定。然而,在20摄氏度下使用N-四癸烷(溶解度=0.386μg(-3))导致关于OSTWALD成熟的显着提高的长期稳定性,所有液滴均在6周储存后剩余10μm。在N-十二烷的情况下,在N-十二烷的情况下,这些新的共聚物稳定的皮克化纳米乳液的长期稳定性明显优于Persson等人在文献中报道的二氧化硅稳定的皮克林乳液。 (胶体冲浪。,A,2014,459,48-57)。这归因于前系统的更大的界面屈服应力,如文献最近描述的(参见P. J. Betramo等人。普通的Natl。Acad。SCI。U.S.A.,2017,114,10373-10378)。

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