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Sonosynthesis of super-alkaline calcium-strontium oxide nanoparticles: Size, morphology, and crystallinity affected the catalytic activity

[Display omitted] •Calcium-strontium oxide nanoparticle was synthesized for the first time.•Ultrasound plays a vital role in the synthesis of nanoparticle.•Nanoparticle obtained in the form of hexagonal plate, mesoporous with a high crystallinity.•Size and crystallinity of nanoparticles greatly affe...

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Published in:Materials science & engineering. B, Solid-state materials for advanced technology Solid-state materials for advanced technology, 2022-12, Vol.286, p.116060, Article 116060
Main Authors: Shahraini, Narjes, Entezari, Mohammad H.
Format: Article
Language:English
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Summary:[Display omitted] •Calcium-strontium oxide nanoparticle was synthesized for the first time.•Ultrasound plays a vital role in the synthesis of nanoparticle.•Nanoparticle obtained in the form of hexagonal plate, mesoporous with a high crystallinity.•Size and crystallinity of nanoparticles greatly affected the catalytic efficiency.•Biodiesel efficiency doubled as the size reduced to one-third. For the first time, nanoparticles of calcium-strontium oxide were synthesized via ultrasound and entirely characterized by different methods. Particles synthesized in the conventional method with a size of 150 nm and cubic form change into the nanoparticles with a size of 30 nm and hexagonal structure under ultrasound. The nanoparticles were mesoporous and had a specific surface area of 47.29 m2/g with improved thermal stability and superalkaline properties. The effect of the size, crystallinity, and morphology of the catalyst was examined with respect to the transesterification reaction. Calcium-strontium oxide synthesized under indirect sonication has a more uniform size and morphology than the particles synthesized by the other two methods. The efficiency of the transesterification reaction using the ultrasonic synthesized catalyst was almost double that of the catalyst synthesized by the conventional method. Calcium-strontium oxide synthesized with minimal size and high surface area was highly effective in transesterification.
ISSN:0921-5107
1873-4944
DOI:10.1016/j.mseb.2022.116060