Structural Transformation of “Silica+Zn” Nanocomposite after Annealing in Oxidizing Atmosphere


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It has been found that “hot” high-fluence Zn+ implantation leads to the formation of the extended layer with zinc-based nanoclusters of size up to 10 nm in SiO2 film. The precipitate’s crystalline nature is confirmed by HRTEM studies. Post-implantation annealing at 700°C for 60 min leads to Zn atoms redistribution in implanted region, formation of the larger crystallites (up to 25 nm) and the small Zn nanoparticles surrounded by the oxide shells (core (Zn)/shell(ZnO) structure) as well as the voids formation at the interface “Zn nanocluster/SiO2 matrix”. The number of the core (Zn)/shell (ZnO) structures and the voids increases after annealing at 700°C for 120 min.

作者简介

F. Komarov

Sevchenko Institute of Applied Physics Problems, Belarusian State University

Email: m.mohovikov@gmail.com
白俄罗斯, Minsk

M. Makhavikou

Sevchenko Institute of Applied Physics Problems, Belarusian State University

编辑信件的主要联系方式.
Email: m.mohovikov@gmail.com
白俄罗斯, Minsk

L. Vlasukova

Belarusian State University

Email: m.mohovikov@gmail.com
白俄罗斯, Minsk

O. Milchanin

Sevchenko Institute of Applied Physics Problems, Belarusian State University

Email: m.mohovikov@gmail.com
白俄罗斯, Minsk

V. Skuratov

Joint Institute for Nuclear Research

Email: m.mohovikov@gmail.com
俄罗斯联邦, Dubna

A. Vuuren

Centre for High Resolution Transmission Electron Microscopy, Nelson Mandela Metropolitan University

Email: m.mohovikov@gmail.com
南非, Port Elizabeth

J. Neetling

Centre for High Resolution Transmission Electron Microscopy, Nelson Mandela Metropolitan University

Email: m.mohovikov@gmail.com
南非, Port Elizabeth

I. Parkhomenko

Belarusian State University

Email: m.mohovikov@gmail.com
白俄罗斯, Minsk

J. Żuk

Maria Curie-Skłodowska University

Email: m.mohovikov@gmail.com
波兰, Lublin


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