Department of Chemistry, University of Miami, Coral Gables, Florida 33124, USA.
Langmuir. 2012 Aug 14;28(32):11920-8. doi: 10.1021/la302478e. Epub 2012 Jul 30.
In this report, we present methods of functionalization of AuNP's with deep-cavity cavitands that can include organic molecules. Two types of deep-cavity cavitand-functionalized AuNP's have been synthesized and characterized, one soluble in organic solvents and the other in water. Functionalized AuNP soluble in organic solvents forms a 1:1 host-guest complex where the guest is exposed to the exterior solvents. The one soluble in water forms a 2:1 host-guest complex where the guest is protected from solvent water. Phosphorescence from thiones and benzil included within heterocapsules attached to AuNP was quenched by gold atoms present closer to the guests included within deep-cavity cavitands. During this investigation, we have synthesized four new deep-cavity cavitands. Of these, two thiol-functionalized hosts allowed us to make stable AuNP's. However, AuNP's protected with two amine-functionalized cavitands tended to aggregate within a day.
在本报告中,我们提出了用深穴穴醚对金纳米粒子(AuNP)进行功能化的方法,这些穴醚可以包含有机分子。已经合成并表征了两种类型的深穴穴醚功能化的 AuNP,一种可溶于有机溶剂,另一种可溶于水。溶于有机溶剂的功能化 AuNP 形成 1:1 的主客体配合物,客体暴露于外部溶剂中。溶于水的形成 2:1 的主客体配合物,客体受到溶剂水的保护。连接到 AuNP 的杂胶囊内的硫酮和苯偶酰的磷光被更接近深穴穴醚内包含的客体的金原子猝灭。在这项研究中,我们合成了四个新的深穴穴醚。其中,两个巯基功能化的主体允许我们制备稳定的 AuNP。然而,用两个胺功能化的穴醚保护的 AuNP 在一天内倾向于聚集。