HomeNanotechnology & MEMSComplex Coacervation Nanoencapsulation

Complex Coacervation Nanoencapsulation

Interactive 3D simulator of complex coacervation nanoencapsulation for omega-3 and vitamin oil droplets: tune pH, polymer charge ratio and ionic strength to watch an electrostatic protein-polysaccharide shell assemble around an oil core, with live wall thickness, encapsulation efficiency and oxidative-protection readouts.

Nanotechnology & MEMS3DModerate60 FPS📱 Mobile-adapted⇄ 2D version
nanotech-topic-110 ↗ Open standalone

This simulator models the electrostatic self-assembly used to nanoencapsulate omega-3 fish oil and fat-soluble vitamins for food and supplement products: a globular protein and an oppositely charged polysaccharide complex around an oil droplet and deposit as a protective wall. Tune pH, the protein-to-polysaccharide ratio, ionic strength and oil load to see the coacervate shell thicken or stay porous in real 3D, while live readouts track the pH-window fit, complexation strength, wall thickness, encapsulation efficiency and an oxygen-barrier shelf-life estimate that explains why nanoencapsulation measurably slows lipid oxidation.

⚙ Under the hood

Interactive 3D simulator of complex coacervation nanoencapsulation for omega-3 and vitamin oil droplets: tune pH, protein-to-polysaccharide ratio and ionic strength to watch an electrostatic protein-polysaccharide shell assemble around an oil core, with live wall thickness, encapsulation efficiency and oxidative-protection readouts.

nanoencapsulationcoacervationfood-nanotechnologyelectrostaticsdrug-deliverypolymer-chemistry

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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