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糖油复合玻璃中的自组装

Self-assembly in sugar-oil complex glasses.

作者信息

Dave Hiteshkumar, Gao Feng, Lee Jing-Huei, Liberatore Matthew, Ho Chia-Chi, Co Carlos C

机构信息

Department of Chemical and Materials Engineering, University of Cincinnati, Cincinnati, Ohio 45221-0012, USA.

出版信息

Nat Mater. 2007 Apr;6(4):287-90. doi: 10.1038/nmat1864. Epub 2007 Mar 25.

Abstract

In aqueous systems, the hydrophobic effect drives the self-assembly of amphiphiles into a broad range of micellar, rod-like, bicontinuous and liquid-crystalline complex fluids. Many of these are relevant to biological matter or technological applications. However, amphiphilic self-assembly is not limited to aqueous systems. Replacement of water with supercritical carbon dioxide, for example, results in complex fluids that combine the properties of gases and liquids. Along this vein, we explore the self-assembly of surfactants in anhydrous sugars. Our study reveals that anhydrous powders of sugars and surfactants suspended in oil spontaneously form molten glasses with nanometre-size domains of sugar and liquid oil without mixing. The low cost, water solubility, low toxicity and stabilizing properties of glassy sugars make them ideal water replacements for many pharmaceutical, food and materials synthesis applications. The optical clarity and solid appearance of these glasses at room temperature belie their inclusion of more than 50% (vol.) oil, which confers liquid-like diffusivity. The unique combination of solid- and liquid-like properties may lead to applications in sensors and optical devices.

摘要

在水体系中,疏水效应驱动两亲分子自组装成多种胶束、棒状、双连续和液晶复合流体。其中许多与生物物质或技术应用相关。然而,两亲分子自组装并不局限于水体系。例如,用超临界二氧化碳代替水会产生兼具气体和液体性质的复合流体。沿着这条思路,我们探索了表面活性剂在无水糖中的自组装。我们的研究表明,悬浮在油中的糖和表面活性剂的无水粉末会自发形成具有纳米尺寸糖域和液态油域且不混合的熔融玻璃态。玻璃态糖的低成本、水溶性、低毒性和稳定特性使其成为许多药物、食品和材料合成应用中理想的水替代物。这些玻璃态物质在室温下的光学透明度和固体外观掩盖了它们含有超过50%(体积)的油这一事实,而正是这些油赋予了它们类似液体的扩散性。固态和液态性质的独特组合可能会在传感器和光学器件中得到应用。

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