Recent progress on synthesis of ceramics core/shell nanostructures
Thin surface layers on fine particles were found to substantially change their functionalities and properties, such as chemical reactivity, thermal stability, catalytic activity, dispersibility, or optical, magnetic and electronic properties. Because of that, the core/shell nanostructures have opene...
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University of Novi Sad
2013-06-01
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doaj-6d4bfba3ff4e48b9a27ddcf34f1aa1c02020-11-24T23:40:12ZengUniversity of Novi SadProcessing and Application of Ceramics1820-61312013-06-0172456210.2298/PAC1302045SRecent progress on synthesis of ceramics core/shell nanostructuresVladimir V. SrdićBojana MojićMilan NikolićStevan OgnjanovićThin surface layers on fine particles were found to substantially change their functionalities and properties, such as chemical reactivity, thermal stability, catalytic activity, dispersibility, or optical, magnetic and electronic properties. Because of that, the core/shell nanostructures have opened up research opportunities in almost all areas of science and engineering, including medicine, catalysis, biotechnology, chemistry, optics, electronics, energy storage, etc. Immense efforts have been implied to produce and investigate different core/shell systems, and thereby, various synthesis techniques have been developed. In this review, we report adetailed overview of different synthesis techniques used for preparation of various ceramics core/shell nanostructures with tunable size and tailored structure.http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2020%2001.pdfceramicsnanostructurescore/shell particlessynthesisreview |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vladimir V. Srdić Bojana Mojić Milan Nikolić Stevan Ognjanović |
spellingShingle |
Vladimir V. Srdić Bojana Mojić Milan Nikolić Stevan Ognjanović Recent progress on synthesis of ceramics core/shell nanostructures Processing and Application of Ceramics ceramics nanostructures core/shell particles synthesis review |
author_facet |
Vladimir V. Srdić Bojana Mojić Milan Nikolić Stevan Ognjanović |
author_sort |
Vladimir V. Srdić |
title |
Recent progress on synthesis of ceramics core/shell nanostructures |
title_short |
Recent progress on synthesis of ceramics core/shell nanostructures |
title_full |
Recent progress on synthesis of ceramics core/shell nanostructures |
title_fullStr |
Recent progress on synthesis of ceramics core/shell nanostructures |
title_full_unstemmed |
Recent progress on synthesis of ceramics core/shell nanostructures |
title_sort |
recent progress on synthesis of ceramics core/shell nanostructures |
publisher |
University of Novi Sad |
series |
Processing and Application of Ceramics |
issn |
1820-6131 |
publishDate |
2013-06-01 |
description |
Thin surface layers on fine particles were found to substantially change their functionalities and properties, such as chemical reactivity, thermal stability, catalytic activity, dispersibility, or optical, magnetic and electronic properties. Because of that, the core/shell nanostructures have opened up research opportunities in almost all areas of science and engineering, including medicine, catalysis, biotechnology, chemistry, optics, electronics, energy storage, etc. Immense efforts have been implied to produce and investigate different core/shell systems, and thereby, various synthesis techniques have been developed. In this review, we report adetailed overview of different synthesis techniques used for preparation of various ceramics core/shell nanostructures with tunable size and tailored structure. |
topic |
ceramics nanostructures core/shell particles synthesis review |
url |
http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2020%2001.pdf |
work_keys_str_mv |
AT vladimirvsrdic recentprogressonsynthesisofceramicscoreshellnanostructures AT bojanamojic recentprogressonsynthesisofceramicscoreshellnanostructures AT milannikolic recentprogressonsynthesisofceramicscoreshellnanostructures AT stevanognjanovic recentprogressonsynthesisofceramicscoreshellnanostructures |
_version_ |
1725510656618135552 |