2022
DOI: 10.1088/1742-6596/2165/1/012023
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Preparation and characterization of Bentonite-OPBA nanocomposite as filler

Abstract: Bentonite-OPBA nanocomposite has been made. The preparation of OPBA and bentonite was carried out by calcination process at a temperature of 700oC for bentonite and 500 °C for OPBA and a ball mill process for 10 hours and coprecipitation method with a solution 6 M HCl. Then nano bentonite was synthesized with surfactant Cetyl Trimethyl Ammonium Bromide (CTAB). The XRD analysis obtained a Bentonite-OPBA particle size of 14.46 nm, with a Tetragonal crystal system and density of 3.01200 g/cm3. XRF analysis obtain… Show more

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Cited by 3 publications
(2 citation statements)
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“…The peak observed at a 2θ angle of 5.67°is attributed to the interlamellar gap, denoted as d001, which measures 15.56 Å in the bentonite sample. [98][99][100][101][102] The SA/bentonite hybrid materials exhibited diffraction peaks of low intensity, indicating their affiliation with the amorphous portion of SA. 103 The FTIR-spectroscopy technique was employed to identify the functional groups involved in the alginate composite.…”
Section: Characterization 3d Printing For Alginate-based Compositesmentioning
confidence: 99%
“…The peak observed at a 2θ angle of 5.67°is attributed to the interlamellar gap, denoted as d001, which measures 15.56 Å in the bentonite sample. [98][99][100][101][102] The SA/bentonite hybrid materials exhibited diffraction peaks of low intensity, indicating their affiliation with the amorphous portion of SA. 103 The FTIR-spectroscopy technique was employed to identify the functional groups involved in the alginate composite.…”
Section: Characterization 3d Printing For Alginate-based Compositesmentioning
confidence: 99%
“…The synthesis of Fe 3 O 4 is easily proceeded by the co-precipitation method using salts of ferric and ferrous under an inert atmosphere, using nitrogen gas keeping pH 12 for the solution. Iron oxide disperses well in a variety of liquid media with varying pH levels [41]. To improve the antimicrobial properties of Fe 3 O 4 , SiO 2 coatings have been investigated for enhancing their stability and biocompatibility [42].…”
Section: Introductionmentioning
confidence: 99%