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  5. Hydrothermal synthesis of advanced composite materials for various environmental applications
 
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Hydrothermal synthesis of advanced composite materials for various environmental applications

Journal
AIP Conference Proceedings
ISSN
0094243X
Date Issued
2020-11-02
Author(s)
Baraitaru A.G.
Politehnica University of Bucharest, Romania
Deák G.
National Institute for Research and Development in Environmental Protection, Romania
Moncea A.M.
National Institute for Research and Development in Environmental Protection, Romania
Dumitru D.F.
National Institute for Research and Development in Environmental Protection, Romania
Panait A.M.
National Institute for Research and Development in Environmental Protection, Romania
Olteanu M.V.
National Institute for Research and Development in Environmental Protection, Romania
Gheorghe I.P.
National Institute for Research and Development in Environmental Protection, Romania
Zarina Yahya
Universiti Malaysia Perlis
DOI
10.1063/5.0022869
Handle (URI)
https://pubs.aip.org/aip/acp/article-abstract/2291/1/020087/725004/Hydrothermal-synthesis-of-advanced-composite?redirectedFrom=fulltext
https://pubs.aip.org/aip
Abstract
Currently, the use of nanotechnology is being explored to create materials with specific properties that perform explicit functions. Thus, the investigation of different synthesis routes of various types of silica-based materials has been pursued. Mesoporous silica can be widely used in the field of environmental protection due to its specific and impressive properties that include uniform hexagonal pores and high specific surface areas, which render it a good host material. Moreover, the mesoporous silica regeneration property through simple technologies makes it a suitable option for different applications. Therefore, in this research were used two types of mesoporous silica obtained by hydrothermal method, which were functionalized with TiO2 and ZnO for subsequent environmental applications. In order to characterize the developed materials, advanced characterization techniques have been used: X-ray fluorescence (XRF) for chemical composition determination, X-ray diffraction (XRD) for mineralogical compounds and electronic scanning microscopy (SEM) to assess the morphology.
File(s)
Hydrothermal synthesis of advanced composite materials for various environmental applications.pdf (58.62 KB)
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Jan 12, 2026
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