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Graphitic Carbon Nitride (g-C3N4) Powder

Graphitic Carbon Nitride (g-C3N4) Powder

Product Details:

  • Water Absorption Insoluble, negligible water absorption
  • Application Photocatalysis, energy storage, electronics, sensors, water splitting, solar cells, catalytic applications
  • Melting Point Above 600°C (decomposes before melting)
  • Usage & Applications Used as a photocatalyst, in energy storage devices, environmental remediation, hydrogen evolution, organic transformations
  • Surface Finish Fine powder, smooth particulate surface
  • Chemical Composition g-C3N4 (graphitic carbon nitride), C:N atomic ratio approximately 3:4
  • Hardness (%) Relatively soft in terms of Mohs scale, ~2
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Graphitic Carbon Nitride (g-C3N4) Powder Price And Quantity

Graphitic Carbon Nitride (g-C3N4) Powder Product Specifications

  • Synthetic inorganic powder
  • Low intrinsic porosity, surface can be modified
  • Good at high temperatures, maintains layered structure
  • Insoluble, negligible water absorption
  • Photocatalysis, energy storage, electronics, sensors, water splitting, solar cells, catalytic applications
  • Above 600°C (decomposes before melting)
  • Low thermal conductivity (~1.2 W/m·K)
  • g-C3N4 (graphitic carbon nitride), C:N atomic ratio approximately 3:4
  • Used as a photocatalyst, in energy storage devices, environmental remediation, hydrogen evolution, organic transformations
  • Yellow to pale yellow
  • Fine powder, smooth particulate surface
  • 2.0 Gram per cubic centimeter(g/cm3)
  • Moderate mechanical strength, brittle
  • 2.28 g/cm³ (approx.)
  • >99%
  • Non-oxide refractory material
  • Powder
  • Powder
  • Relatively soft in terms of Mohs scale, ~2
  • 2.7 eV
  • Keep in dry, sealed container; avoid moisture and direct sunlight
  • <10 microns (can vary by preparation method)
  • Layered, graphitic-like structure
  • 94046-44-9
  • High thermal stability, chemically inert under ambient conditions
  • Odorless
  • Insoluble in water and common organic solvents
  • Semiconducting

Graphitic Carbon Nitride (g-C3N4) Powder Trade Information

  • Cash in Advance (CID), Cheque, Cash Advance (CA)
  • 55000 , Per Day
  • 7 Days Week
  • Western Europe, Australia, North America, South America, Eastern Europe, Middle East, Africa, Central America, Asia

Product Description

Product Name Graphite Carbon Nitride
Formula C3N4+xHy
Stock No. NCZ-AM101-19
Appearance Off-white to yellowish-brown powder
Molecular Weight Varies with composition
Density 2.336 g/cm3
Average Particle Size 10-50 Micron (Customizable)
Specific Surface Area >35 m2/g
Absorption max 390nm
Thermal Conductivity 1.25 W/mK


Exceptional Stability and Purity

Graphitic Carbon Nitride powder offers remarkable thermal stability, maintaining its structure even at temperatures above 600C. With a purity greater than 99% and moderate mechanical strength, it ensures reliable performance across demanding applications. Its chemically inert nature under ambient conditions makes it a trusted material in laboratories and industry for long-term projects.


Versatile Applications

This material is highly valued for its role in photocatalysis, solar cells, energy storage devices, and sensors. Its semiconducting properties and layered structure enhance reactions critical for water splitting and environmental remediation. With low thermal conductivity and tailored surface modifications, g-C3N4 adapts to a broad spectrum of research and industrial needs.

FAQs of Graphitic Carbon Nitride (g-C3N4) Powder:


Q: How should Graphitic Carbon Nitride (g-C3N4) powder be stored to maintain its quality?

A: Graphitic Carbon Nitride powder should be kept in a dry, sealed container and stored away from moisture and direct sunlight. Proper storage helps protect its purity and prevents degradation.

Q: What are the main applications of g-C3N4 powder in industry and research?

A: g-C3N4 powder is primarily used in photocatalysis, energy storage, sensors, water splitting, solar cell fabrication, and various catalytic applications. Its semiconducting and stable properties make it ideal for these uses.

Q: When is g-C3N4 powder preferred over other semiconductor materials?

A: It is chosen when high thermal stability, chemical inertness, and low water absorption are required. Its ability to maintain a layered structure at high temperatures makes it advantageous for high-performance, long-duration applications.

Q: Where can g-C3N4 powder be sourced in India?

A: It is available through dealers, exporters, importers, manufacturers, producers, retailers, suppliers, traders, and wholesalers throughout India, catering to both laboratory and industrial requirements.

Q: What benefits does using g-C3N4 powder offer for photocatalytic processes?

A: Using g-C3N4 enhances photocatalytic efficiency due to its optimal band gap energy (2.7 eV) and graphitic-layered structure, improving charge separation and activity across various environmental and energy-related applications.

Q: How is g-C3N4 powder typically processed or modified for specialized uses?

A: The powder can undergo surface treatments to increase porosity or to functionalize its surface, optimizing performance for specific catalytic or electronic applications without altering its base structure.

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