2022
DOI: 10.3390/ijms23031093
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Solid-State Preparation of Metal and Metal Oxides Nanostructures and Their Application in Environmental Remediation

Abstract: Nanomaterials have attracted much attention over the last decades due to their very different properties compared to those of bulk equivalents, such as a large surface-to-volume ratio, the size-dependent optical, physical, and magnetic properties. A number of solution fabrication methods have been developed for the synthesis of metal and metal oxides nanoparticles, but few solid-state methods have been reported. The application of nanostructured materials to electronic solid-state devices or to high-temperatur… Show more

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Cited by 19 publications
(7 citation statements)
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References 146 publications
(204 reference statements)
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“…Metallic oxides are normally grown at high temperatures by following the favourable oxidation process [152] with permission from Taylor and Francis. [210,211]. When a metallic oxide is prepared by the CBD technique, a post-annealing treatment with high temperatures after deposition is normally realized [212,213].…”
Section: Use Of Sdds and Scs For Cbd Deposition Of Zns Zn(oh) 2 And Znomentioning
confidence: 99%
“…Metallic oxides are normally grown at high temperatures by following the favourable oxidation process [152] with permission from Taylor and Francis. [210,211]. When a metallic oxide is prepared by the CBD technique, a post-annealing treatment with high temperatures after deposition is normally realized [212,213].…”
Section: Use Of Sdds and Scs For Cbd Deposition Of Zns Zn(oh) 2 And Znomentioning
confidence: 99%
“…Hence, the objects may display physical substantially different from those displayed by either atoms or bulk materials lead to new technological opportunities as well as new challenges [12][13][14] . Bimetallic oxide nanomaterials are most important and are widely studied solid materials at nanoscale for various new properties for substantial applications [15][16] . Especially, nanosized transition metal oxides have attracted much due to their outer electron configuration and are applied widely in various reactions for their structural properties such as high surface area, variable pore size, and stability [17][18][19] .…”
Section: Introductionmentioning
confidence: 99%
“…Mixed metal oxide nanoparticles are commonly synthesized from metal chlorides, metal nitrates, organometallic compounds, such as metal carboxylate and metal amides. 19,20 The synthesis of nanoparticles from organometallic precursors using wet chemical processes is advantageous for controlling particle size, homogeneity, and surface chemistry. The shape evolution of bimetallic nanoparticles mainly depends on the growth rates of the crystal facets, which can be influenced by the precursor concentration, temperature, or capping agent.…”
Section: Introductionmentioning
confidence: 99%