Zhong Ling, Jiao Tifeng, Liu Minghua
Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Colloid and Interface Science, Institute of Chemistry, CAS, Beijing, P. R. China, 100190.
Langmuir. 2008 Oct 21;24(20):11677-83. doi: 10.1021/la802338f. Epub 2008 Sep 27.
Generation and assembly of gold nanostructures were investigated in the organized molecular films of a series of gemini amphiphiles. The chloroauric acid, dissolved in the aqueous subphase, was incorporated into the monolayers of the gemini amphiphiles containing ethyleneamine spacers through an interfacial assembly. The in situ formed complex monolayers were transferred onto solid substrates, and gold nanoparticles were generated in the film by a chemical or photochemical reduction. Discrete gold nanoparticles with an absorption maximum at 550 nm were generated in the films by photoirradiation, while different gold nanostructures were obtained by chemical reduction. Depending on the chemical reductant, various shape and assembly of gold nanostructures were obtained. When reduced by hydroquinone, a tree-branched assembly of the nanoparticles was obtained and the film showed a broad band centered at around 900 nm. When NaBH 4 was applied, crooked nanowires or assembly of nanoparticles were obtained, depending on concentration, and the film showed absorption at 569 or 600 nm. Furthermore, by combining the photochemical and chemical reduction methods, i.e., the chloroaurate ion-incorporated film was initially irradiated with UV light and then subjected to chemical reduction, the optical absorption of the formed gold nanostructures can be regulated.
在一系列双子表面活性剂的有序分子膜中研究了金纳米结构的生成与组装。溶解于水相下层的氯金酸通过界面组装被纳入含有乙二胺间隔基的双子表面活性剂单层中。原位形成的复合单层被转移到固体基质上,然后通过化学或光化学还原在膜中生成金纳米颗粒。通过光辐照在膜中生成了在550 nm处有最大吸收的离散金纳米颗粒,而通过化学还原得到了不同的金纳米结构。根据化学还原剂的不同,获得了各种形状和组装方式的金纳米结构。当用对苯二酚还原时,得到了纳米颗粒的树枝状组装体,并且该膜在900 nm左右呈现出一个宽带。当使用硼氢化钠时,根据浓度不同得到了弯曲的纳米线或纳米颗粒组装体,并且该膜在569或600 nm处有吸收。此外,通过结合光化学和化学还原方法,即先对含有氯金酸根离子的膜进行紫外光辐照,然后进行化学还原,可以调节所形成的金纳米结构的光吸收。