Skrabalak Sara E, Xia Younan
Department of Chemistry, Indiana University, Bloomington, Indiana 47405, USA.
ACS Nano. 2009 Jan 27;3(1):10-5. doi: 10.1021/nn800875p.
The potential of using nanocrystals in applications within the fields of catalysis, electronics, medicine, and others has fueled research into the preparation and assembly of these materials. For most applications, it is necessary to have nanocrystal samples in which the size, shape, composition, and structure are tightly controlled within a narrow distribution. This need has motivated researchers to explore different synthesis protocols, including a method featured in this issue of ACS Nano by Kitaev and co-workers, where decahedral silver nanoparticles were used as seed particles for the growth of faceted silver rods. In this Perspective, we describe recent advances in seeded growth as the ultimate approach to producing metal nanocrystals with precisely controlled sizes, shapes, and compositionsthe necessary first step toward their use and assembly for large-scale applications.
在催化、电子、医学等领域的应用中使用纳米晶体的潜力推动了对这些材料制备和组装的研究。对于大多数应用而言,需要获得尺寸、形状、组成和结构在狭窄分布范围内受到严格控制的纳米晶体样品。这种需求促使研究人员探索不同的合成方案,包括本期《美国化学会纳米》杂志中Kitaev及其同事介绍的一种方法,该方法使用十面体银纳米颗粒作为有刻面银棒生长的种子颗粒。在这篇展望文章中,我们描述了种子生长法的最新进展,它是制备尺寸、形状和组成精确可控的金属纳米晶体的终极方法——这是将其用于大规模应用及组装的必要第一步。