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在电子辐照下 α-Ag2WO4 上 Ag 纳米颗粒的原位生长:探究物理原理。

In situ growth of Ag nanoparticles on α-Ag2WO4 under electron irradiation: probing the physical principles.

机构信息

Institute of Chemistry, State University of Campinas-Unicamp, 13083-970, Campinas, SP, Brazil.

出版信息

Nanotechnology. 2016 Jun 3;27(22):225703. doi: 10.1088/0957-4484/27/22/225703. Epub 2016 Apr 26.

Abstract

Exploiting the plasmonic behavior of Ag nanoparticles grown on α-Ag2WO4 is a widely employed strategy to produce efficient photocatalysts, ozone sensors, and bactericides. However, a description of the atomic and electronic structure of the semiconductor sites irradiated by electrons is still not available. Such a description is of great importance to understand the mechanisms underlying these physical processes and to improve the design of silver nanoparticles to enhance their activities. Motivated by this, we studied the growth of silver nanoparticles to investigate this novel class of phenomena using both transmission electron microscopy and field emission scanning electron microscopy. A theoretical framework based on density functional theory calculations (DFT), together with experimental analysis and measurements, were developed to examine the changes in the local geometrical and electronic structure of the materials. The physical principles for the formation of Ag nanoparticles on α-Ag2WO4 by electron beam irradiation are described. Quantum mechanical calculations based on DFT show that the (001) of α-Ag2WO4 displays Ag atoms with different coordination numbers. Some of them are able to diffuse out of the surface with a very low energy barrier (less than 0.1 eV), thus, initiating the growth of metallic Ag nanostructures and leaving Ag vacancies in the bulk material. These processes increase the structural disorder of α-Ag2WO4 as well as its electrical resistance as observed in the experimental measurements.

摘要

利用在 α-Ag2WO4 上生长的 Ag 纳米颗粒的等离子体行为是制备高效光催化剂、臭氧传感器和杀菌剂的常用策略。然而,对于受电子照射的半导体位点的原子和电子结构的描述仍然不可用。这种描述对于理解这些物理过程的机制以及改进银纳米颗粒的设计以提高其活性非常重要。受此启发,我们使用透射电子显微镜和场发射扫描电子显微镜研究了银纳米颗粒的生长,以研究这一新型现象。我们开发了一个基于密度泛函理论计算(DFT)的理论框架,结合实验分析和测量,来研究材料的局部几何和电子结构的变化。描述了电子束辐照在 α-Ag2WO4 上形成 Ag 纳米颗粒的物理原理。基于 DFT 的量子力学计算表明,α-Ag2WO4 的(001)面具有不同配位数的 Ag 原子。其中一些原子能够以非常低的能量势垒(小于 0.1 eV)逸出表面,从而引发金属 Ag 纳米结构的生长,并在体材料中留下 Ag 空位。这些过程增加了 α-Ag2WO4 的结构无序性,以及实验测量中观察到的其电阻。

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