2020
DOI: 10.1080/10584587.2019.1674992
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Morphological and Optical Characterization of Sol-Gel Synthesized Ni-Doped ZnO Nanoparticles

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Cited by 38 publications
(11 citation statements)
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“…These resulting materials obtained from the sol-gel method of synthesis are applied in a number of applications like protective coatings, heterogeneous catalysts, optoelectronic materials and many more. [50][51][52][53] This process offers control over the physico-chemical properties of resulting compounds by careful variation in processing parameters during synthesis. 54 The various parameters that could affect the synthesized material and could be selectively controlled are nature of precursor, type of solvent used, the molar ratio of reactants, pH of the solution, type and concentration of additives used (catalysts, surfactants, capping agent), ageing period, pre and post-heat treatment.…”
Section: Potentials Of the Sol-gel Processmentioning
confidence: 99%
“…These resulting materials obtained from the sol-gel method of synthesis are applied in a number of applications like protective coatings, heterogeneous catalysts, optoelectronic materials and many more. [50][51][52][53] This process offers control over the physico-chemical properties of resulting compounds by careful variation in processing parameters during synthesis. 54 The various parameters that could affect the synthesized material and could be selectively controlled are nature of precursor, type of solvent used, the molar ratio of reactants, pH of the solution, type and concentration of additives used (catalysts, surfactants, capping agent), ageing period, pre and post-heat treatment.…”
Section: Potentials Of the Sol-gel Processmentioning
confidence: 99%
“…Zinc oxide is a multifunctional material as a consequence of its band gap energy (3.37 eV) and exciting binding energy (60.0 meV). 17,18 Furthermore, zinc oxide is a gorgeous material for its multifarious applications including solar cells, 19 photocatalysts, 20 optical, 21 field emission devices 22 and chemical sensor. [23][24][25] The best performance of the materials depends on their structure and morphology.…”
mentioning
confidence: 99%
“…In past several studies found ZnO nanoparticles exposure increased the root and shoot elongation in wheat, sweet sorghum, and soybean. Recently, compared to the traditional hydro-priming method, rice seed nano-primed with biological ZnO nanoparticles at low concentration (10 mg/l) considerably improved 100% seed germination and seedling metrics 65 . The precise process by which nanoparticles promote seed priming is not well defined in the literature.…”
Section: Resultsmentioning
confidence: 99%