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两亲性多糖:制备具有可控表面特性纳米颗粒的有用工具。

Amphiphilic polysaccharides: useful tools for the preparation of nanoparticles with controlled surface characteristics.

作者信息

Durand A, Marie E, Rotureau E, Leonard M, Dellacherie E

机构信息

Laboratoire de Chimie Physique Macromoléculaire, UMR CNRS-INPL 7568, Groupe ENSIC, BP 451, 54001 Nancy Cedex, France.

出版信息

Langmuir. 2004 Aug 3;20(16):6956-63. doi: 10.1021/la0490341.

Abstract

Polymeric surfactants obtained by hydrophobic modification of dextran are used as stabilizers for oil-in-water emulsions. The kinetics of interfacial tension decrease is studied as a function of polymer structural characteristics (degree of hydrophobic substitution) and at various polymer concentrations. Several hydrocarbon oils, either aliphatic (octane, decane, dodecane, and hexadecane) or aromatic (styrene), are tested. Kinetics exhibits the same general trends no matter which oil or polymer is considered. The emulsifying properties of the polymeric surfactants are illustrated by the preparation of oil-in-water emulsions. The droplet size at the preparation is correlated to the amount of oil and to the polymer concentration in the aqueous phase. For low polymer/oil ratios, it is shown that the droplet size is limited by the initial amount of polymer. On the contrary, for high polymer/oil ratios, the droplet size seems to level down, indicating that other parameters become predominant. Emulsion aging occurs by Ostwald ripening, and it is demonstrated that the theoretical equation of Lifshitz, Slyozov, and Wagner (LSW) correctly describes the experimental results. The nature of the oil has important effects on emulsion aging, as described by the LSW equation. The aging of emulsions containing oil mixtures is quantitatively described on the basis of the results with pure oils. The influence of polymer chemical structure can be conveniently correlated to interfacial tension results through the LSW equation. On the contrary, the influence of oil volume fraction seems to be overestimated by the usual correction factor, k(phi). The effect of temperature on emulsion aging is finally examined. Miniemulsions stabilized with dextran derivatives are used for the radical polymerization of styrene. Following this procedure, polysaccharide-covered polystyrene nanoparticles are prepared and characterized (size and surface coverage). The size of the particles is directly correlated to that of the initial droplets for styrene volume fractions around 10%. On the contrary, for initial styrene volume fractions around 20%, particles exhibit a larger size than the initial droplets, indicating that coalescence processes take place during polymerization. The amount of dextran at the surface of the particles is determined and compared to the adsorbed amounts resulting from emulsion preparation.

摘要

通过葡聚糖疏水改性得到的聚合物表面活性剂被用作水包油乳液的稳定剂。研究了界面张力降低的动力学与聚合物结构特征(疏水取代度)以及不同聚合物浓度的关系。测试了几种烃类油,包括脂肪族的(辛烷、癸烷、十二烷和十六烷)或芳香族的(苯乙烯)。无论考虑哪种油或聚合物,动力学都呈现出相同的总体趋势。通过制备水包油乳液来说明聚合物表面活性剂的乳化性能。制备时的液滴尺寸与油的量以及水相中聚合物的浓度相关。对于低聚合物/油比,结果表明液滴尺寸受聚合物初始量的限制。相反,对于高聚合物/油比,液滴尺寸似乎趋于稳定,表明其他参数变得更为重要。乳液老化通过奥斯特瓦尔德熟化发生,并且证明了利夫希茨、斯廖佐夫和瓦格纳(LSW)的理论方程正确地描述了实验结果。如LSW方程所述,油的性质对乳液老化有重要影响。基于纯油的结果对含油混合物乳液的老化进行了定量描述。聚合物化学结构的影响可以通过LSW方程方便地与界面张力结果相关联。相反,油体积分数的影响似乎被通常的校正因子k(phi)高估了。最后研究了温度对乳液老化的影响。用葡聚糖衍生物稳定的细乳液用于苯乙烯的自由基聚合。按照此程序,制备并表征了多糖包覆的聚苯乙烯纳米颗粒(尺寸和表面覆盖率)。对于苯乙烯体积分数约为10%的情况,颗粒尺寸与初始液滴尺寸直接相关。相反,对于初始苯乙烯体积分数约为20%的情况,颗粒尺寸比初始液滴大,表明聚合过程中发生了聚并过程。测定了颗粒表面葡聚糖的量,并与乳液制备产生的吸附量进行了比较。

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