Gas Diffusion Layers (GDL)

Ultra-thin Titanium Porous Transfer Layer

High-performance porous transport media engineered for Proton Exchange Membrane (PEMFC), Direct Methanol (DMFC), Phosphoric Acid (PAFC) fuel cells, and water electrolyzers.

Toray 090 Carbon Paper with PTFE Treatment

Wet Proofed Carbon Cloth - 406 µm

Toray 090 Carbon Paper with MPL and PTFE Treatment

Toray 060 Carbon Paper with MPL and PTFE Treatment

Toray 060 Carbon Paper Value Pack with PTFE Treatment

Thermally Platinized Ultra-thin Titanium Porous Transfer Layer

Titanium Fiber Felt

Thermally Platinized Titanium Screen

Sigracet 36 BB Carbon Paper

Stainless Steel Wire Cloth | Type 316 | 12" x 12"

Rayon Graphite Felt - 3.1 mm thick

Panex PW03 - 406 µm Carbon Cloth

Rayon Carbon Felt - 6.3 mm thick

PAN Carbon Felt - 6.3 mm thick

Nickel Foam (80–120 PPI) - 1 mm

Hydro-LAT 1400 Carbon Cloth

Hydro-LAT 2400 Carbon Cloth

Freudenberg H23C8 - 205 µm Carbon Paper

Freudenberg H24C5 - 270 µm Carbon Paper

Teflon‑treated carbon cloth offering superior hydrophobicity, thermal stability, and strength for high‑temperature electrochemical use.

Sintered Grade 2 porous media (250 µm, ~30% porosity) engineered for PEM electrolyzer anodes to resist carbon oxidation and optimize mass transport.

A 280 µm carbon fiber composite GDL with ≥5% Teflon wet-proofing, offering hydrophobic water management as a low-cost fuel cell catalyst backing.

A 340 µm composite GDL (280 µm substrate + 60 µm MPL) with PTFE wet-proofing for efficient liquid water management in fuel cells.

A 250 µm composite GDL (190 µm substrate + 60 µm MPL) with PTFE wet-proofing for efficient liquid water management in fuel cells.

A 190 µm carbon composite paper with 5% Teflon wet-proofing, containing nine 10x10 cm hydrophobic sheets for fuel cell catalyst backing.

A 0.2–0.3 mm sintered porous media (53–56% porosity) for electrolyzer anodes, preventing carbon oxidation and providing high electrical conductivity.

A 250 µm sintered titanium transfer layer with non-catalytic Pt coating, offering high conductivity and oxidation resistance for PEM electrolyzers.

Flattened, annealed expanded titanium screen with Pt coating (60–80 µg/cm²) to resist oxidation and preserve conductivity in electrolyzers.

Bolting-grade woven 316 stainless mesh for direct methanol fuel cells and open-air convection current collectors, offering superior corrosion resistance.

Non-woven 285 μm GDL with microporous layer (MPL) and 5 wt% PTFE hydrophobic treatment, engineered to prevent flooding in PEM fuel cell water management.

Viscose-precursor felt graphitized at 2500 °C, offering high compressibility and conductivity for redox flow battery electrodes and thermal insulation.

Viscose-derived, 1900 °C carbonized felt with high compressibility and low ash content for redox flow batteries and furnace insulation.

Continuous-filament woven fabric offering high tensile strength, low oxidation, and wrinkle-free contouring for composites and gas diffusion layers.

Polyacrylonitrile-derived felt carbonized at 1200 °C, offering high compressibility and flexibility for redox flow battery electrodes and heat shields.

Ultra-pure 99.99+% nickel foam offering high compressibility and open porosity for alkaline fuel cells, water electrolyzers, and current collectors.

A 450–500 µm carbon cloth with dual-sided hydrophilic MPL and ion-conductive binder for aqueous batteries, sensors, and capacitors.

A 400–450 µm GDL featuring a single-sided hydrophilic microporous layer and ion-conductive binder for aqueous batteries and sensors.

A 270 µm carbon paper GDL with microporous layer (MPL), tailored for low-humidity stationary CHP, backup, air-cooled, and off-grid LT-PEMFC systems.

A flexible 205 µm GDL with hydrophobic MPL treatment, optimized for water management in low-humidity automotive and stationary LT-PEMFC applications.

Freudenberg H15C13 - 155 µm Carbon Paper

ELAT LT1400 - 454 μm Carbon Cloth

Freudenberg H23C2 - 220 µm Carbon Paper

ELAT LT1400 - 454 μm Carbon Cloth

ELAT Activated Plain Cloth - 406 μm Carbon Cloth

Flexible carbon paper gas diffusion layer with microporous layer, 220 µm thick, optimized for humidified stationary LT-PEMFC and HT-PEMFC systems.

Flexible carbon paper GDL with MPL and hydrophobic treatment; 155 µm thick, ideal for humidified stationary LT-PEMFC systems.

Teflon-treated carbon cloth GDL with microporous layer; 454 µm thick, ideal for gaseous or liquid electrochemical cells.

Teflon-treated carbon cloth GDL with microporous layer; 454 µm thick, ideal for gaseous or liquid electrochemical cells.

Hydrophilic, activated carbon cloth GDL without MPL; 406 µm thick, optimized for flow batteries, electrolyzers, and liquid reactors.

Woven GDL with MPL engineered to reduce catalyst slurry permeation and prevent flooding in PEM fuel cells, PAFCs, and electrolyzers.

CT W1S1011 - 410 μm Carbon Cloth

CT GF030 - 2.5 - 4.5mm Graphite Felt

AvCarb MGL370

CT W0S1011 - 360 μm Carbon Cloth

Toray 060 Carbon Paper with PTFE Treatment

Sigracet 39 BB - 315 μm Carbon Paper

Woven GDL without MPL or PTFE treatment, offering high compressibility and quality control for fuel cell and biofuel research.

Conductive, chemically stable graphite felt electrode optimized for vanadium redox flow batteries, water purification, and thermal insulation.

Superior carbon paper GDL for fuel cells and electrolyzers, offering low electrical resistivity, high tensile strength, and uniform thickness.

190 μm carbon fiber composite paper with hydrophobic PTFE wet-proofing, designed as an effective GDL catalyst backing layer for fuel cells.

Non-woven carbon paper GDL with MPL and 5 wt% PTFE treatment, designed to prevent flooding and optimize water management in PEMFCs and PEM electrolysis.

Non-woven carbon paper GDL with MPL and 5 wt% PTFE treatment, designed to prevent flooding and enhance water management in PEMFCs and PEM electrolysis.

Sigracet 22 BB - 215 μm Carbon Paper

Sigracet 22 AA - 180 μm Carbon Paper

Titanium Screen

Toray 120 Carbon Paper with PTFE Treatment

Titanium Frit

Sigracet 39 AA - 280 μm Carbon Paper

370 μm carbon fiber composite paper with hydrophobic PTFE wet-proofing, engineered as an effective GDL catalyst backing layer for fuel cells.

Non-woven carbon paper GDL without PTFE treatment or MPL, offering a cost-effective substrate with high surface flatness for fuel cell applications.

Grade 1 flattened, annealed expanded titanium screen used as an electrolyzer flow field diffuser to prevent oxidation on the oxygen anode side.

Sintered porous titanium frit with 80-micron rating, providing membrane support and corrosion resistance in high-pressure PEM electrolyzers.

Non-woven carbon paper GDL without PTFE treatment, offering high surface flatness and inter-lot homogeneity for fuel cell applications.

Non-woven carbon paper GDL with MPL and 5 wt% PTFE treatment, designed to prevent flooding and enhance water management in stationary and automotive PEMFCs.

Sigracet 28 BC - 235 µm Carbon Paper

Freudenberg H23C6 - 250 µm Carbon Paper

Thermally Platinized Low Porosity Titanium Fiber Felt

Panex PW06 - 508 µm Carbon Cloth

High Porosity Titanium Fiber Felt

CT GF065 - 6.5mm Graphite Felt

Thermally stable, woven carbon fiber fabric offering high tensile strength and contour conformation without wrinkling for composite applications.

Flexible carbon paper GDL with MPL and hydrophobic treatment, optimized for highly humidified stationary LT-PEMFC systems and automotive fuel cells.

Corrosion-resistant titanium fiber felt with thermal platinum coating, optimized as an anode flow field diffuser for PEM electrolyzers.

Sintered titanium fiber felt offering ~70-73% porosity, designed as an anode flow field and diffuser material for standard PEM electrolyzers.

Conductive, chemically stable 6.5 mm graphite felt electrode designed for vanadium redox flow batteries, water purification, and thermal insulation.

Sintered titanium fiber felt (~70-73% porosity) with thermal platinum coating, designed as a corrosion-resistant anode flow field for PEM electrolyzers.

Thermally Platinized High Porosity Titanium Fiber Felt

AvCarb GDS3260

Toray 120 Carbon Paper with MPL and PTFE Treatment

AvCarb P75T

SIGRACELL GFD 4.6mm Graphite Felt

SIGRACELL GFD 2.5mm Graphite Felt

PAN-based carbon fiber paper gas diffusion layer with a hydrophobic Teflon wet-proof coating, optimized for moisture handling in PEM fuel cells.

AvCarb gas diffusion system using EP40 carbon paper, PTFE, and a microporous layer to ensure optimal water management in tough PEMFC and DMFC systems.

Toray 120 carbon composite paper with PTFE wet-proofing and a microporous layer, engineered for fuel cells, batteries, and advanced electrolyzers.

High-porosity graphite battery felt offering high electrical conductivity and chemical inertness for redox flow and advanced high-temperature cells.

Permeable graphite battery felt with high porosity and stability, built to enhance charge exchange in redox flow and high-temperature battery systems.

Soft, compressible rayon-derived graphite felt fired at 2500 °C, offering high conductivity for redox flow batteries, microbial cells, and insulation.

Rayon Graphite Felt - 25.4 mm thick

ELECTROACRYLMECH OPC PVT LTD

KARAIKUDI , TAMILNADU

7092449892 / 7098928824

© 2025. All rights reserved.

INDIA , 630003

CIN- U26516TN2025OPC186116

GST - 33AAJCE2722R1ZC

UDYAM - UDYAM-TN-21-0056206

Contact Electroacrylmech

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