Lower preparation costHigher reactive site density
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UC San Diego researchers have developed luminescent porous silicon nanoparticles (LPSiNP) that can carry a drug payload and whose intrinsic near-infrared photoluminescence allows in-vivo monitoring of accumulation and degradation. Unlike most optically active nanomaterials (e.g., carbon nanotubes, g.....
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This technology demonstrates the exceptional performance of open framework materials possessing accessible metal ions as highly selective carbon dioxide capture and storage networks. They also demonstrate much lower energy requirements to regenerate compared to amine solutions and have a larger upta.....
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High level of control over shapes, sizes, features, color and fluorescenceMassively parallel high throughput production of particlesComplex multi-layer 3D shapes and customizable internal compositionsAbility to tailor functional surface groups to control stability and interactions
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