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InP/ZnS Core-Shell Quantum Dot Quantum Yield (2D Cross-Section)

Interactive 2D cross-section of an InP/ZnS core-shell phosphide quantum dot: tune core radius, ZnS shell thickness, native-oxide defect level and temperature and watch photoluminescence quantum yield, emission color and exciton lifetime respond live, plus a quantum-yield-vs-shell-thickness curve you can pan and zoom.

Nanotechnology & MEMS2DAdvanced60 FPS📱 Mobile-adapted⇄ 3D version
2d-nanoparticles-phosphides ↗ Open standalone

Phosphide nanoparticles such as indium phosphide (InP) are the leading cadmium-free quantum dot chemistry, but a bare InP core oxidizes and traps excitons at unpassivated surface sites, killing most of its light output. This 2D cross-section simulator renders the InP core wrapped in its ZnS shell, ties core radius to quantum-confined emission color via a Brus-style bandgap model, and ties shell thickness and native-oxide defect level to a competing radiative/non-radiative decay model that produces a live photoluminescence quantum yield. Watch red trap-capture sparks disappear as you grow the shell, and the exciton's own glow dim under heat — the exact synthesis trade-off that makes commercial InP/ZnS QLED and bio-imaging quantum dots always ship core/shell, never bare core. A live chart plots quantum yield against shell thickness so you can see the whole trade-off curve at once, not just the current point.

⚙ Under the hood

Interactive 2D cross-section of an InP/ZnS core-shell phosphide quantum dot: tune core radius, ZnS shell thickness, native-oxide defect level and temperature and watch photoluminescence quantum yield, emission color and exciton lifetime respond live, alongside a pannable, zoomable quantum-yield-vs-shell-thickness curve.

nanotechnologyquantum-dotssemiconductorsphotoluminescencematerials-sciencephosphides

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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