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首页> 外文期刊>The Journal of Supercritical Fluids >Production of theophylline nanoparticles using rapid expansion of supercritical solutions with a solid cosolvent (RESS-SC) technique
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Production of theophylline nanoparticles using rapid expansion of supercritical solutions with a solid cosolvent (RESS-SC) technique

机译:使用超临界溶液和固体助溶剂(RESS-SC)技术快速膨胀来生产茶碱纳米颗粒

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摘要

We report on the production of theophylline nanoparticles by rapid expansion of supercritical solutions with a solid cosolvent (RESS-SC) using CO2 with L-menthol or vanillin. The effects of particle collection conditions such as collection temperatures and spray distances on the theophylline nanoparticles produced were investigated in order to elucidate crystal growth mechanism of the present RESS-SC process. A liquid phase appeared at a pre-expansion section in the case of using L-menthol, and this suggests that it is unsuitable for a solid cosolvent in the present conditions. In the case of using vanillin, nano-sized particles of around 85 nm, which are about one-third as large as those produced by the conventional RESS technique, were obtained. Particle collection conditions have negligible effects on the particle sizes. This result suggests that crystal growth of theophylline particles crystallized in a collection vessel are blocked by crystallized vanillin particles those surrounds theophylline particles. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们报告了通过使用CO2与L-薄荷醇或香兰素的固体助溶剂(RESS-SC)快速超临界溶液的快速膨胀来生产茶碱纳米颗粒。为了阐明本RESS-SC方法的晶体生长机理,研究了颗粒收集条件如收集温度和喷雾距离对产生的茶碱纳米颗粒的影响。在使用L-薄荷醇的情况下,液相在预膨胀部出现,这表明它不适合当前条件下的固体助溶剂。在使用香兰素的情况下,获得了约85nm的纳米尺寸的颗粒,其约是通过常规RESS技术生产的那些的三分之一。颗粒收集条件对颗粒大小的影响可忽略不计。该结果表明,在收集容器中结晶的茶碱颗粒的晶体生长被包围茶碱颗粒的结晶香兰素颗粒阻止。 (C)2015 Elsevier B.V.保留所有权利。

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