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树状大分子包裹的 Pt 纳米粒子合成中的配位和还原过程。

Coordination and reduction processes in the synthesis of dendrimer-encapsulated Pt nanoparticles.

机构信息

Department of Chemical Engineering, Kyoto University, Katsura, Nishikyo, Kyoto 615-8510, Japan.

出版信息

Langmuir. 2010 Feb 16;26(4):2339-45. doi: 10.1021/la902770p.

Abstract

We synthesized Pt nanoparticles encapsulated in poly(amidoamine) (PAMAM) dendrimers by Pt(2+) coordination and subsequent reduction by NaBH(4). To optimize the experimental conditions for the Pt nanoparticle synthesis, we systematically examined the effects of pH, temperature, coordination time, and surface functional groups of the dendrimers on coordination and NaBH(4) reduction by UV-vis spectroscopy and transmission electron microscopy (TEM) measurements. We used generation-4 dendrimers (hydroxyl-terminated PAMAM dendrimers; G4-OH) and generation-4.5 dendrimers (carboxyl-terminated PAMAM dendrimers; G4.5-COO(-)). According to our results, dendrimer-encapsulated Pt nanoparticles with a narrow size distribution were obtained at high Pt(2+) coordination ratios (alpha), while nonencapsulated Pt nanoparticles were formed at low alpha values. To enhance alpha, it was necessary to use a neutral G4-OH solution or an acidic G4.5-COO(-) solution. Temperature had a marked effect on the coordination rate, with an increase in the temperature from room temperature to 50 degrees C, and the coordination time decreased from 10 days to 1-2 days.

摘要

我们通过 Pt(2+)配位和随后的 NaBH(4)还原合成了聚酰胺胺(PAMAM)树枝状大分子封装的 Pt 纳米粒子。为了优化 Pt 纳米粒子合成的实验条件,我们系统地研究了 pH 值、温度、配位时间以及树枝状大分子的表面官能团对 UV-vis 光谱和透射电子显微镜(TEM)测量的配位和 NaBH(4)还原的影响。我们使用了第四代树枝状大分子(羟基封端的 PAMAM 树枝状大分子;G4-OH)和第四代半代树枝状大分子(羧基封端的 PAMAM 树枝状大分子;G4.5-COO(-))。根据我们的结果,在高 Pt(2+)配位比(α)下获得了具有窄粒径分布的树枝状大分子封装的 Pt 纳米粒子,而在低α值下形成了未封装的 Pt 纳米粒子。为了提高α,需要使用中性的 G4-OH 溶液或酸性的 G4.5-COO(-)溶液。温度对配位速率有显著影响,从室温升高到 50 摄氏度时,配位时间从 10 天缩短到 1-2 天。

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