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添加的各种硫醇分子对树枝状聚合物-金纳米复合材料形态的影响。

Effects of various thiol molecules added on morphology of dendrimer-gold nanocomposites.

作者信息

Satoh Koji, Yoshimura Tomokazu, Esumi Kunio

机构信息

Department of Applied Chemistry and Institute of Colloid and Interface Science, Science University of Tokyo, Kagurazaka, Shinjuku-ku, Tokyo 162-8601, Japan.

出版信息

J Colloid Interface Sci. 2002 Nov 15;255(2):312-22. doi: 10.1006/jcis.2002.8585.

Abstract

Interactions between poly(amidoamine) dendrimer (PAMAM)-gold nanocomposites and alkanethiols and between the former nanocomposites and thiol-modified poly(amidoamine) dendrons in ethyl acetate were investigated by adding alkanethiols, such as 1-propanethiol and 1,3-propanedithiol, and thiol-modified poly(amidoamine) dendrons, generations 0.5 and 2.5 (G0.5-SH and G2.5-SH). The PAMAM dendrimers with surface methyl ester groups used were generations 1.5 and 5.5 (G1.5 and G5.5). The mean particle sizes of PAMAM-gold nanocomposites were about 2.1 for G1.5 and 2.4 nm for G5.5. In both nanocomposite systems where 1-propanethiol and 1,3-propanedithiol were added, the mean particle size was about 4 nm, twice that of the systems where these thiols were not added. Increasing the addition of 1,3-propanedithiol made the average particle size smaller for both nanocomposites systems. To compare with alkanethiol, thiol-modified poly(amidoamine) dendron with a highly branched structure on one side was synthesized. Using G2.5-SH as a protective agent, dendron-gold nanocomposites with mean diameters of 3 to 4 nm were obtained. The difference in particle size was seen only when the combination of PAMAM-gold nanocomposites and thiol-modified dendron was less sterically dense, modified dendron (G0.5-SH). The mechanisms for morphology changes in the dendrimer-gold nanocomposites by the addition of these thiols are discussed.

摘要

通过添加链烷硫醇(如1-丙硫醇和1,3-丙二硫醇)以及第0.5代和第2.5代硫醇改性聚(酰胺胺)树枝状分子(G0.5-SH和G2.5-SH),研究了聚(酰胺胺)树枝状大分子(PAMAM)-金纳米复合材料与链烷硫醇之间以及前一种纳米复合材料与硫醇改性聚(酰胺胺)树枝状分子在乙酸乙酯中的相互作用。所使用的具有表面甲酯基团的PAMAM树枝状大分子为第1.5代和第5.5代(G1.5和G5.5)。G1.5的PAMAM-金纳米复合材料的平均粒径约为2.1 nm,G5.5的为2.4 nm。在添加了1-丙硫醇和1,3-丙二硫醇的两种纳米复合材料体系中,平均粒径约为4 nm,是未添加这些硫醇的体系的两倍。增加1,3-丙二硫醇的添加量会使两种纳米复合材料体系的平均粒径变小。为了与链烷硫醇进行比较,合成了一侧具有高度支化结构的硫醇改性聚(酰胺胺)树枝状分子。使用G2.5-SH作为保护剂,获得了平均直径为3至4 nm的树枝状分子-金纳米复合材料。仅当PAMAM-金纳米复合材料与硫醇改性树枝状分子(G0.5-SH)的组合空间位阻较小的时候,才会出现粒径差异。讨论了添加这些硫醇后树枝状大分子-金纳米复合材料形态变化的机制。

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