DNF Silica

Nano-Engineered Silica with High Surface Chemistry

DNF Silica is a precision-engineered nanostructured silica designed for advanced performance in catalysis, filtration, and biomedical applications. Engineered at the nanoscale, its high surface reactivity, tunable pore architecture, and exceptional stability make it a cornerstone material for high-efficiency systems. Our DNF Silica features meticulously controlled pore size distributions, from microporous to mesoporous structures, enabling tailored molecular interaction and selective permeability. With a surface area exceeding 800 m²/g and customizable surface functionalization, it supports optimized adsorption, catalysis, and integration.

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Key features

Real-world uses

Technical highlights

DNF Silica - Material Applications

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Industrial Catalysts

Boosts reaction efficiency by up to 40%.

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Water Filters

Removes >95% pollutants from water.

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Gas Separation

Precise separation for clean fuels

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Drug Delivery Carriers

Controlled release of medicines

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Tissue Scaffolds

Biocompatible platforms for regeneration.

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Diagnostic Sensors

High-sensitivity detection devices.

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Cosmetic Additives

Controlled-release formulations in skincare.

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Polymer Additives

Improves plastics durability & heat stability.

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Energy-Efficient Reactors

Cuts synthesis energy costs by 20%.

Frequently Asked Questions(FAQ):-

A: DNF Silica is Doped Nanostructured Functionalized Silica, a high-performance nanomaterial used to improve the mechanical, thermal, and chemical properties of products across multiple industries.
A: It’s available in powder form, with customized particle size and surface functionality options (hydrophilic or hydrophobic).
A: Unlike conventional silica, DNF Silica is nanostructured and surface-functionalized, providing higher surface area, tunable chemistry, and superior reinforcement
A: Yes, DNF Silica maintains stability up to ~1000°C, making it suitable for thermal insulation and high-temperature coatings.
A: Yes, it’s non-toxic, inert, and environmentally friendly, suitable for sustainable industrial use.
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