Department of Chemistry, Capital Normal University, 105 West 3rd Ring Road North, Beijing 100048, People's Republic of China.
Nanotechnology. 2013 Jul 26;24(29):295501. doi: 10.1088/0957-4484/24/29/295501. Epub 2013 Jun 25.
Au nanocrystals (NCs) enclosed by higher-index facets have high surface chemical activity. They attract much attention because of their excellent biocompatibility. In this work, well-defined elongated tetrahexahedral (ETHH) Au NCs and end-truncated ETHH with high-index facets are successfully prepared by using a single surfactant system of didodecyldimethylammonium bromide (DDAB) and a binary system of cetyltrimethylammoniumbromide and DDAB in two-step seed-mediated growth. The characteristics of high-index facet Au NC modified electronic aptamer-based sensors are presented and they are applicable to a wide range of aptamers. Herein, we only take L-histidine as the representative sensing target. With modification of the Au NCs, a very low detection limit (sub-picomolar) is obtained. In particular, a detailed sensitivity comparison between the modification of end-truncated ETHH and ETHH Au NCs is presented to demonstrate the slight difference in the chemical activities of Au NCs with different high-index facets. Our work sheds light on the large scale fabrication of Au/metallic NCs with high-index facets and also provides a new eye-opening example of engineering ultra-sensitive DNA sensors based on Au NCs.
金纳米晶体(NCs)被高指数晶面包围,具有高的表面化学活性。由于其良好的生物相容性,它们引起了广泛的关注。在这项工作中,通过使用十二烷基二甲基溴化铵(DDAB)的单一表面活性剂体系和十六烷基三甲基溴化铵和 DDAB 的二元体系,成功地制备了具有高指数晶面的规则长八面体(ETHH)Au NCs 和端截断的 ETHH。提出了高指数晶面 Au NC 修饰的电子适体基传感器的特性,它们适用于广泛的适体。在此,我们仅以 L-组氨酸为代表性的传感靶标。通过修饰 Au NCs,可以获得非常低的检测限(亚皮摩尔)。特别是,通过端截断的 ETHH 和 ETHH Au NCs 的修饰,提出了详细的灵敏度比较,以证明具有不同高指数晶面的 Au NCs 的化学活性略有差异。我们的工作为高指数晶面 Au/金属 NCs 的大规模制备提供了启示,也为基于 Au NCs 的超灵敏 DNA 传感器的工程提供了一个新的视角。