2023
DOI: 10.1016/j.jece.2022.109229
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Enhanced adsorption of methylene blue by mixed-phase bismuth ferrite prepared by non-aqueous sol-gel route

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Cited by 16 publications
(8 citation statements)
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“…Manufacturing BiFeO3 NPs using conventional solid-state methods results in low reproducibility, particle size increase, and the production of an impurity phase composed of Bi 2 O 3 and Bi 2 Fe 4 O 9 . (Rameshkumar et al 2021 ; Singh et al 2023 ) Pulsed laser ablation technique Bi subsalicylate Pulsed laser ablation of a Bi subsalicylate (BSS) target in an aqueous condition was identified as the most appropriate method for producing BSS NPs. Physical vapor deposition, or immersed this method, is a technique for creating NPs while preserving their original chemical and elemental makeup.…”
Section: Different Methods To Prepare Binpsmentioning
confidence: 99%
“…Manufacturing BiFeO3 NPs using conventional solid-state methods results in low reproducibility, particle size increase, and the production of an impurity phase composed of Bi 2 O 3 and Bi 2 Fe 4 O 9 . (Rameshkumar et al 2021 ; Singh et al 2023 ) Pulsed laser ablation technique Bi subsalicylate Pulsed laser ablation of a Bi subsalicylate (BSS) target in an aqueous condition was identified as the most appropriate method for producing BSS NPs. Physical vapor deposition, or immersed this method, is a technique for creating NPs while preserving their original chemical and elemental makeup.…”
Section: Different Methods To Prepare Binpsmentioning
confidence: 99%
“…It is important to note that the same had enhanced the CV and lowered the fuel density. The XRD pattern of Mg-ZnO exhibited the crystallographic dominance of (10-11) than other planes; (10)(11) elucidates lower surface energy than (11)(12)(13)(14)(15)(16)(17)(18)(19)(20) and . Therefore, it is believed that the formation of Mg-ZnO NPs with the dominance of low surface energy crystallographic facets (10)(11) would have led to higher oxidation stability than other NP-blended fuels.…”
Section: Effect On Oxidation Stabilitymentioning
confidence: 94%
“…Investigating the atomistic mechanisms of surface reactions on nanoparticle fluids which drive the favorable outcomes are found challenging due to the limitations of characterizing techniques [15]. Metallic nano-additives [11,16] particularly semiconducting nanoparticles (e.g., ZnOS, ZnS etc.) synthesized by economical routes [17] offer additional advantages as compared to conventional nano-additives by promoting electron transfer during enzymatic reactions.…”
Section: Introductionmentioning
confidence: 99%
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“…Recent developments in high-performance computers, artificial intelligence (AI), machine learning, Internet of Everything, novel materials, and microjoining technologies are creating a revolution in gas-sensing market. AI makes it possible to integrate more efficiently real and virtual worlds. The examples include many smart wearable sensors like gloves, socks, touchpads, electronic skin, chatbots, robots, smart homes, etc .…”
Section: Factors Affecting Gas Sensing Of Nanocompositesmentioning
confidence: 99%