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通过乙醇对初级乳液液滴的界面效应控制聚(ε-己内酯)纳米球的尺寸

Size-control of poly(epsilon-caprolactone) nanospheres by the interface effect of ethanol on the primary emulsion droplets.

作者信息

Poletto Fernanda S, Silveira Rodrigo P, Fiel Luana A, Donida Bruna, Rizzi Marília, Guterres Silvia S, Pohlmann Adriana R

机构信息

Programa de Pós-Graduação em Química, Instituto de Química, Universidade Federal do Rio Grande do Sul (UFRGS), 91501-970, Porto Alegre RS, Brazil.

出版信息

J Nanosci Nanotechnol. 2009 Aug;9(8):4933-41. doi: 10.1166/jnn.2009.1270.

Abstract

We hypothesized that the control of the poly(epsilon-caprolactone) (PCL) nanosphere sizes could be achieved by controlling the size of the primary emulsion droplets considering a combined effect of the ethanol volume fraction in the organic phase and the stirring rate of the primary emulsion. In this way, we prepared poly(epsilon-caprolactone) (PCL) nanospheres in order to evaluate the effect of those variables on the hydrodynamic diameters of the nanoparticles by a 32 factorial design. The size distribution curves considering intensity, volume and number of particles showed monomodal distributions for all formulations. The nanoparticle diameters (z-average) decreased from 423 to 249 nm with the increase in both the ethanol volume fraction from 0.0 to 0.4 and the stirring rate from 9500 to 17500 rpm. The polydispersity indexes ranged from 0.076 to 0.176. A statistical model based on the regression coefficients calculated by the factorial design analysis was proposed in order to predict the nanoparticle diameters. Using the predictive model, the results showed high similarity between the experimental and the predicted nanosphere diameters, validating the model for loaded PCL nanospheres. The backscattering profiles of the primary emulsions prepared using different proportions of ethyl acetate and ethanol showed a reduction in the size of the droplets from 1.659 microm to 0.706 microm with the increase in the ethanol volume fraction and the stirring rate. Ethanol decreased the restoring stress of the droplets as a consequence of the reduction in the interface tension. The decrease in the nanoparticle mean size was a consequence of the droplet size reduction in the primary emulsion.

摘要

我们推测,考虑到有机相中乙醇体积分数和初级乳液搅拌速率的综合影响,可以通过控制初级乳液液滴的大小来实现聚(ε-己内酯)(PCL)纳米球尺寸的控制。通过这种方式,我们制备了聚(ε-己内酯)(PCL)纳米球,以便通过32析因设计评估这些变量对纳米颗粒流体动力学直径的影响。考虑颗粒强度、体积和数量的尺寸分布曲线显示,所有配方均呈现单峰分布。随着乙醇体积分数从0.0增加到0.4以及搅拌速率从9500 rpm增加到17500 rpm,纳米颗粒直径(z平均值)从423 nm降至249 nm。多分散指数范围为0.076至0.176。为了预测纳米颗粒直径,提出了一个基于析因设计分析计算的回归系数的统计模型。使用该预测模型,结果表明实验纳米球直径与预测纳米球直径高度相似,验证了负载PCL纳米球的模型。使用不同比例的乙酸乙酯和乙醇制备的初级乳液的背散射曲线显示,随着乙醇体积分数和搅拌速率的增加,液滴尺寸从1.659微米减小到0.706微米。由于界面张力的降低,乙醇降低了液滴的恢复应力。纳米颗粒平均尺寸的减小是初级乳液中液滴尺寸减小的结果。

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