2021
DOI: 10.1155/2021/5102014
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Nanomaterial by Sol‐Gel Method: Synthesis and Application

Abstract: The sol-gel process is a more chemical method (wet chemical method) for the synthesis of various nanostructures, especially metal oxide nanoparticles. In this method, the molecular precursor (usually metal alkoxide) is dissolved in water or alcohol and converted to gel by heating and stirring by hydrolysis/alcoholysis. Since the gel obtained from the hydrolysis/alcoholysis process is wet or damp, it should be dried using appropriate methods depending on the desired properties and application of the gel. For ex… Show more

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Cited by 615 publications
(220 citation statements)
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“…Therefore, it is possible to obtain silica film decorated with organic residues on the surface or as definite regions inside the silica network. The diffusion process of the molecules and, implicitly, the degree of connectivity in the network, are influenced, at the same time affecting the rate of the hydrolysis reaction [41][42][43][44].…”
Section: The Methods Of Obtaining Nanosols Colored With Curcuminmentioning
confidence: 99%
“…Therefore, it is possible to obtain silica film decorated with organic residues on the surface or as definite regions inside the silica network. The diffusion process of the molecules and, implicitly, the degree of connectivity in the network, are influenced, at the same time affecting the rate of the hydrolysis reaction [41][42][43][44].…”
Section: The Methods Of Obtaining Nanosols Colored With Curcuminmentioning
confidence: 99%
“…The sol–gel method can be used to obtain solvated gel networks through polymerization of small molecular precursors [ 161 , 162 ]. The solvent is not necessarily water in the first place, but once the gel network is formed, the solvent can be replaced with water.…”
Section: Hydrogel-based Cell Culturementioning
confidence: 99%
“…e importance of studying the conductivity of this nanoparticle oxide stems from the fact that until our knowledge of the optimal conductivity of this oxide for different dimensions and morphologies is complete, it is not possible to optimize this oxide product by controlling battery performance such as current, geometry, cathode, and catalyst [149][150][151][152][153][154].…”
Section: O 2 Oxide Productmentioning
confidence: 99%