Oxide nanoparticles

F. Netzer, C. Noguera
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引用次数: 8

Abstract

Oxide micro- and nanoparticles are ubiquitous in the natural environment. They have long been used as catalysts, but have found novel applications with the advent of nanotechnologies. From a fundamental point of view, they bridge the gap between the properties of isolated atoms or molecules and those of bulk condensed phases. They present a large spectrum of atomic and electronic structures, due to their finite size in the three dimensions of space and the fact that their atoms are nearly all surface atoms. They represent the first stages of nucleation and growth of larger size oxides, and their stability and properties which depend upon the thermodynamic conditions under which they are formed, largely impact the final product. This chapter reviews their specific properties and analyses their physical origin, both when they are produced in the gas phase, in an aqueous environment, or when cation mixing takes place.
氧化物纳米颗粒
氧化微粒和纳米颗粒在自然环境中无处不在。它们长期以来一直被用作催化剂,但随着纳米技术的出现,它们有了新的应用。从一个基本的观点来看,它们弥补了孤立原子或分子的性质与大块凝聚相的性质之间的差距。由于它们在三维空间中的尺寸有限,而且它们的原子几乎都是表面原子,因此它们呈现出大量的原子和电子结构。它们代表了大尺寸氧化物成核和生长的第一个阶段,它们的稳定性和性质取决于它们形成的热力学条件,在很大程度上影响最终产物。本章回顾了它们的特殊性质,并分析了它们在气相、水环境或阳离子混合发生时的物理来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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