• Hydrophilic Stainless Steel Fiber Paper Quick View
    • Hydrophilic Stainless Steel Fiber Paper Quick View
    • Hydrophilic Stainless Steel Fiber Paper

    • Hydrophilic Stainless Steel Fiber Paper (316L Stainless Steel Felt) combines a highly porous conductive fiber network with enhanced surface wettability. The hydrophilic treatment improves electrolyte penetration, liquid distribution, and gas bubble removal during operation. Key Benefits Enhanced surface wettability High electrical conductivity Porosity: 30–85% Fiber diameter: 6–50 μm Improved electrolyte and gas transport Good mechanical and chemical stability Easy to…
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  • Hydrophilic Titanium Fiber Paper Quick View
    • Hydrophilic Titanium Fiber Paper Quick View
    • Hydrophilic Titanium Fiber Paper

    • Hydrophilic Titanium Fiber Paper is manufactured from high-purity titanium fibers using a 3D sintering process, followed by a specialized surface hydrophilic treatment. The enhanced surface wettability promotes efficient electrolyte penetration, gas–liquid transport, and bubble removal while maintaining titanium’s excellent corrosion resistance and mechanical stability. Key Features Enhanced surface wettability and electrolyte infiltration 3D interconnected porous structure for efficient mass transport…
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  • Hydrophillic Cobalt Foam Quick View
    • Hydrophillic Cobalt Foam Quick View
    • Hydrophillic Cobalt Foam

    • Hydrophilic Cobalt Foam is a surface-engineered form of porous cobalt foam developed to improve interaction between the metallic framework and aqueous electrolytes. The modified surface promotes better wetting throughout the interconnected pore structure, supporting efficient electrolyte access and improved solid–liquid contact. Its enhanced surface characteristics make it useful for electrochemical systems where electrolyte transport, gas removal, and interfacial stability are…
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  • Hydrophillic Nickel-Cobalt Foam Quick View
    • Hydrophillic Nickel-Cobalt Foam Quick View
    • Hydrophillic Nickel-Cobalt Foam

    • Hydrophilic Ni–Co Foam is a surface-treated version of conventional Ni–Co Foam, engineered to improve interaction between the porous metallic structure and aqueous electrolytes. The enhanced surface wettability promotes more effective liquid distribution throughout the interconnected pore network. This makes the material particularly useful where efficient electrolyte transport, gas removal, and electrode–electrolyte contact are important for stable electrochemical operation. Key Benefits…
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  • In-Situ Raman Flow Cell Quick View
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      In-Situ Raman Flow Cell Quick View
    • In-Situ Raman Flow Cell

    • Original price was: ₹10,000.00.Current price is: ₹9,000.00.
    • The in-situ Raman electrochemical cell is specifically designed for real-time monitoring of electrode materials during electrochemical reactions using Raman spectroscopy. It enables direct observation of structural and chemical changes under operating conditions, providing valuable insights into reaction mechanisms and catalyst behavior.
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  • Jacketed Electrochemical Cell (Leak Proof) Quick View
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      Jacketed Electrochemical Cell (Leak Proof) Quick View
    • Jacketed Electrochemical Cell (Leak Proof)

    • Original price was: ₹2,000.00.Current price is: ₹1,000.00.
    • The Jacketed Electrochemical Cell is a temperature-controlled reaction system designed for precise and reproducible electrochemical experiments. Featuring a double-walled (jacketed) body, it allows circulation of a heating or cooling fluid to maintain a constant reaction temperature, making it ideal for sensitive kinetic and thermodynamic studies.
    • Select options This product has multiple variants. The options may be chosen on the product page
  • L-Shape Glassy Carbon Electrode Quick View
    • L-Shape Glassy Carbon Electrode Quick View
    • L-Shape Glassy Carbon Electrode

    • The L-Shape Glassy Carbon Electrode is a specially designed working electrode featuring an angled (L-shaped) geometry for enhanced accessibility and convenience in electrochemical setups. It combines the excellent electrochemical properties of glassy carbon with an ergonomic design, making it ideal for applications where straight electrodes are difficult to position.
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  • Mercury/Mercurous Sulfate Reference Electrode (Pack of 2) Quick View
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      Mercury/Mercurous Sulfate Reference Electrode (Pack of 2) Quick View
    • Mercury/Mercurous Sulfate Reference Electrode (Pack of 2)

    • Original price was: ₹14,000.00.Current price is: ₹10,400.00.
    • The Hg/Hg₂SO₄ Reference Electrode (Mercury/Mercurous Sulfate) is a stable and reliable reference electrode designed for electrochemical systems where chloride ions must be avoided. It operates based on the equilibrium between mercury (Hg) and mercurous sulfate (Hg₂SO₄) in a sulfate-based electrolyte, typically potassium sulfate (K₂SO₄), providing a well-defined and reproducible reference potential.
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  • Nafion 117 Membrane Quick View
    • Nafion 117 Membrane Quick View
    • Nafion 117 Membrane

    • ₹35.90
    • A high-performance proton exchange membrane (PEM) that enables efficient proton (H⁺) transport while preventing gas crossover. Known for its high conductivity, chemical stability, and durability, it is widely used in fuel cells, water electrolysis, and electrochemical applications.
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  • Nafion Solution (Binder) Quick View
  • Nickel Fiber Paper Quick View
    • Nickel Fiber Paper Quick View
    • Nickel Fiber Paper

    • Youveim® Research-Grade Nickel Fiber Paper Nickel Fiber Paper is a porous, highly conductive material manufactured from high-purity nickel fibers using a controlled sintering process. Its interconnected 3D structure provides high surface area, efficient electron transport, mechanical strength, and excellent electrolyte/gas transport. The nickel substrate is particularly suitable for alkaline electrochemical environments and provides an effective platform for catalyst deposition. Ideal…
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  • Nickel Foam Quick View
    • Nickel Foam Quick View
    • Nickel Foam

    • A highly porous and conductive material with a 3D structure that offers a large surface area and excellent mass transport. Commonly used in electrocatalysis, CO₂ reduction, and energy applications.
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