This study examines the effectiveness of W/O microemulsion-mediated SmS nanospheres in pickering emulsion-based crystal violet (CV) dye degradation and PANI@SmS nanocomposite synthesis. The evaluation of nanospheres inside the core of reverse micelles was performed through DLS, TEM and FESEM analyses. The formation of nanospheres involve two phases: a nucleation phase (5-30 min) and growth phase (30-120 min). Through hydrophobization of negatively charged (with a zeta value of -4.47 mV at neutral pH) SmS nanoparticles (0.1 wt%) with a suitable amount of a cationic CTAB surfactant, a stable O/W pickering emulsion was developed. 0.1 wt% SmS hydrophobized with 2.7 mM CTAB offered a stable pickering emulsion with a diameter of 23 μm after 1 day of storage. This pickering emulsion improves the local concentration of CV by efficiently encapsulating dye molecules inside the core of emulsion droplets. Therefore, dye molecules get numerous opportunities to interact with the SmS photocatalyst and efficiently degrade. The pickering emulsion stabilised by 0.1 wt% of SmS nanoparticles hydrophobized with 2.7 mM of CTAB results in almost 100% degradation. Moreover, using only solid SmS (having wt% of 0.025 or 0.075) as a pickering stabiliser, new PANI@SmS spherical nanocomposites were synthesised pickering emulsion polymerization. The formation of PANI@SmS composites was identified UV-vis, IR, and H-NMR investigations. The analysis of FESEM images showed that the amount of nanoparticles used in the dispersion (for 0.025 wt%, 35 nm and 0.075 wt%, 29 nm) strongly influences the size and shape of the composites.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10929598PMC
http://dx.doi.org/10.1039/d3na01067hDOI Listing

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