Jennings Travis, Strouse Geoffrey
Institute of Biomaterials and Biomedical Engineering, University of Toronto, Ontario, Canada.
Adv Exp Med Biol. 2007;620:34-47. doi: 10.1007/978-0-387-76713-0_3.
Colloidal gold nanoparticles have been around for centuries. Historically, the use of gold nanoparticles has been predominantly found in the work of artists and craftsman because of their vivid visible colors. However, through research, the size, shape, surface chemistry, and optical properties of gold nanoparticles are all parameters which are under control and has opened the doors to some very unique and exciting capabilities. The purpose of this chapter is to review some of the important discoveries and give background in regard to gold nanoparticles. First, the most common wet chemical methods toward their synthesis are reviewed, specifically discussing routes toward spherical colloidal synthesis and controllable rod formation. Next, because many applications of gold nanoparticles are a result of their magnificent interactions with light, some of the basic optical-electronic properties and the physics behind them are elucidated. Finally, by taking advantage of the optical-electronic properties, numerous proven applications for gold nanoparticles are discussed, as well as their predicted applications in the future.
胶体金纳米颗粒已经存在了几个世纪。从历史上看,由于其鲜艳的可见颜色,金纳米颗粒的使用主要出现在艺术家和工匠的作品中。然而,通过研究发现,金纳米颗粒的尺寸、形状、表面化学性质和光学性质都是可以控制的参数,这为一些非常独特和令人兴奋的功能打开了大门。本章的目的是回顾一些重要的发现,并介绍金纳米颗粒的相关背景知识。首先,回顾了合成金纳米颗粒最常用的湿化学方法,特别讨论了球形胶体合成和可控棒状形成的途径。接下来,由于金纳米颗粒的许多应用都源于它们与光的奇妙相互作用,因此阐述了一些基本的光电性质及其背后的物理原理。最后,利用光电性质,讨论了金纳米颗粒众多已被证实的应用以及它们未来的预期应用。