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通过反胶束界面交联和模板合成制备亚纳米金-铂纳米粒子的简便方法。

Facile preparation of organic nanoparticles by interfacial cross-linking of reverse micelles and template synthesis of subnanometer Au-Pt nanoparticles.

机构信息

Department of Chemistry, Iowa State University, Ames, Iowa 50011-3111, USA.

出版信息

ACS Nano. 2011 Apr 26;5(4):2637-46. doi: 10.1021/nn102666k. Epub 2011 Mar 11.

DOI:10.1021/nn102666k
PMID:21366348
Abstract

A single- and a double-tailed cationic surfactant with the triallylammonium headgroup formed reverse micelles (RMs) in heptane/chloroform containing a small amount of water. The reverse micelles were cross-linked at the interface upon UV irradiation in the presence of a water-soluble dithiol cross-linker and a photoinitiator. The resulting interfacially cross-linked reverse micelles (ICRMs) of the single-tailed surfactant aggregated in a solvent-dependent fashion, whereas those of the double-tailed were identical in size as the corresponding RMs. The ICRMs could extract anionic metal salts, such as AuCl(4)(-) and PtCl(6)(2-), from water into the organic phase. Au and Pt metal nanoparticles were produced upon reduction of metal salts. The covalent nature of the ICRMs made the template synthesis highly predictable, with the size of the metal particles controlled by the amount of the metal salt and the method of reduction. Nanoalloys were obtained by combining two metal precursors in the same reaction. Reduction of the ICRM-entrapped aurate also occurred without any external reducing agents, and the gold nanoparticles differed dramatically from those obtained through sodium borohydride reduction. The same template allowed the preparation of luminescent Au(4), Au(8), and Au(13)-Au(23) clusters, as well as gold nanoparticles several nanometers in size, simply by using different amounts of gold precursor and reducing conditions.

摘要

具有三烯丙基铵头基的单尾和双尾阳离子表面活性剂在含有少量水的庚烷/氯仿中形成反胶束(RM)。反胶束在存在水溶性二硫醇交联剂和光引发剂的情况下在界面处通过 UV 照射交联。所得的单尾表面活性剂的界面交联反胶束(ICRM)以溶剂依赖性方式聚集,而双尾的则与相应的 RM 大小相同。ICRM 可以将阴离子金属盐,例如 AuCl(4)(-)和 PtCl(6)(2-)从水中萃取到有机相中。金属盐还原后生成 Au 和 Pt 金属纳米粒子。ICRM 的共价性质使模板合成具有高度可预测性,金属颗粒的大小由金属盐的量和还原方法控制。通过在同一反应中结合两种金属前体制备纳米合金。无需任何外部还原剂也可以发生 ICRM 包裹的金酸盐的还原,并且金纳米粒子与通过硼氢化钠还原获得的金纳米粒子有很大的不同。相同的模板允许通过使用不同量的金前体和还原条件来制备发光的 Au(4)、Au(8)和 Au(13)-Au(23)簇以及几纳米大小的金纳米粒子。

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