de Mello Donegá Celso, Liljeroth Peter, Vanmaekelbergh Daniel
Condensed Matter and Interfaces, Debye Institute, University of Utrecht, Princetonplein 1, 3508 TA Utrecht, The Netherlands.
Small. 2005 Dec;1(12):1152-62. doi: 10.1002/smll.200500239.
The quintessence of the hot-injection method, a synthesis route for monodisperse, highly luminescent semiconductor nanocrystals, is reviewed. The separate stages of nucleation and growth of the nanocrystals are discussed in the framework of classical nucleation theory and an equilibrium model proposed by Debye. We also review the numerous adaptations of the original synthesis that currently provide colloidal nanocrystals with well-defined, size-dependent optical, electrical, and magnetic properties. The availability of these remarkable materials is one of the most promising developments in nanoscience and nanotechnology.
本文综述了热注入法的精髓,这是一种用于合成单分散、高发光半导体纳米晶体的合成路线。在经典成核理论和德拜提出的平衡模型框架下,讨论了纳米晶体成核和生长的各个阶段。我们还回顾了原始合成方法的众多改进,这些改进目前为胶体纳米晶体提供了明确的、与尺寸相关的光学、电学和磁学性质。这些卓越材料的可得性是纳米科学和纳米技术中最有前景的发展之一。