Applications

From thin-film materials and catalytic technologies to filtration systems, building a next-generation ecosystem for high-performance material applications.

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Graphene-enhanced wafer processing setup used in semiconductor manufacturing, showing a silicon wafer on a precision fabrication platform.

Semiconductor Processes


Graphene-reinforced composites and low-contamination thin films are applied across multiple stages of semiconductor manufacturing, including thermal management components (heat spreaders), vacuum sealing materials, and plasma-resistant or low particle-shedding coatings.

With high thermal stability, chemical resistance, and low outgassing characteristics, these materials are well suited for both front-end and back-end process steps, improving process reliability while reducing contamination risks.

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Membrane-based water treatment and separation module illustrating flow control and filtration for UF and NF applications.

Water Treatment & Separation


GO/PVDF composite membranes with tunable pore size, surface charge, and hydrophilic properties are designed for high-selectivity filtration environments, including UF/NF processes and virus enrichment applications.

The materials offer higher flux and improved fouling resistance, and can be integrated into existing module formats (such as spiral-wound and flat-sheet modules) to enhance energy efficiency and reduce operating costs.

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Catalytic reactor system designed for chemical reaction enhancement, suitable for oxidation and advanced catalytic processes.
Catalysis & Reaction Systems

Graphene-supported metal catalysts are suitable for applications such as H₂O₂ decomposition, VOC oxidation, and reaction rate enhancement.

With high specific surface area and tunable electrical and thermal transport properties, these materials enable higher conversion efficiency under low- to medium-temperature operating conditions. They are well suited for integration into chemical processing, wastewater treatment, and environmental control systems, including reactor and piping configurations.

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Thermal management components for electronic devices, featuring heat spreaders and conductive interfaces for efficient heat dissipation.

Thermal Management & Electronics


Graphene / SiC / PVDF composite films offer high thermal conductivity, lightweight design, and flexible conformability, making them suitable for:

  • 5G communication modules
  • High-performance computing (HPC) systems
  • Battery module thermal dissipation
  • Optical module heat spreaders

These materials can function as flexible heat spreaders, thermal interface layers, or structural reinforcement layers, improving heat transfer efficiency and extending device service life.

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Graphene-based biosensor concept illustrating biomolecule detection on a graphene sensing surface for biomedical applications.

Thermal Management & Electronics


Graphene / PVDF piezoelectric films are suitable for pressure sensing, wearable devices, micro-vibration detection, and medical contact sensors.


Through material composition and processing optimization, piezoelectric output can be enhanced by up to 3×, enabling applications such as:

  • Health monitoring systems
  • Medical sensing patches
  • Micro-actuators


These materials support next-generation flexible, high-sensitivity sensing technologies.

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Thin-film composite structure used in advanced manufacturing, showing layered polymer and graphene films processed by roll-to-roll equipment.

Advanced Manufacturing & Industrial Composites


Graphene-reinforced composites significantly improve the toughness, mechanical strength, wear resistance, and impact resistance of polymer and resin-based materials.

Applications include:

  • Industrial equipment structural components
  • Specialized chemical-resistant packaging
  • 3D printing materials
  • Engineering wear-resistant plates

They can be used as toughening fillers, interfacial reinforcement additives, or conductive / semi-conductive modifiers, enhancing overall material engineering performance.

Innrex — Where Materials Shape The Future

Advanced Materials | Graphene Films | Catalytic Technologies
From R&D to Mass Production, Enabling the Next Generation of Industrial Applications