Chemical and Biological Engineering, University at Buffalo (SUNY), Buffalo, NY 14260-4200, USA.
Chemical and Biological Engineering, University at Buffalo (SUNY), Buffalo, NY 14260-4200, USA.
Adv Colloid Interface Sci. 2017 Jun;244:199-266. doi: 10.1016/j.cis.2016.01.005. Epub 2016 Feb 2.
In this review, we provide a broad overview of solution-phase synthesis of transition metal oxide nanocrystals (NCs), including a substantial catalog of published methods, and a unifying classification and discussion. Prevalent subcategories of solution-phase synthesis are delineated and general features are summarized. The diverse morphologies achievable by solution-phase synthesis are defined and exemplified. This is followed by sequential consideration of the solution-phase synthesis of first-row transition metal oxides. The common oxides of Ti, V, Mn, Fe, Co, Ni, Cu, and Zn are introduced; major crystal lattices are presented and illustrated; representative examples are explained; and numerous synthesis formulae are tabulated. Following this presentation of experimental studies, we present an introduction to theories of NC nucleation and growth. Various models of NC nucleation and growth are addressed, and important concepts determining the growth and structure of colloidal NCs are explained. Overall, this review provides an entry into systematic understanding of solution-phase synthesis of nanocrystals, with a reasonably comprehensive survey of results for the important category of transition metal oxide NCs.
在这篇综述中,我们提供了一个关于过渡金属氧化物纳米晶体(NCs)的溶液相合成的广泛概述,包括大量已发表的方法,以及一个统一的分类和讨论。溶液相合成的流行亚类被描绘出来,并总结了它们的一般特征。通过溶液相合成实现的不同形态被定义并举例说明。接下来,我们依次考虑了第一过渡金属氧化物的溶液相合成。介绍了 Ti、V、Mn、Fe、Co、Ni、Cu 和 Zn 的常见氧化物;呈现并说明主要晶格;解释代表性实例;并列出了许多合成公式。在介绍这些实验研究之后,我们介绍了 NC 成核和生长的理论。讨论了各种 NC 成核和生长模型,并解释了决定胶体 NC 生长和结构的重要概念。总的来说,这篇综述为理解纳米晶体的溶液相合成提供了一个入门,对过渡金属氧化物 NCs 这一重要类别进行了较为全面的综述。