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Product Portfolio

Graphene Additives
Engineered for Your Industry

Tailored solutions for lubricants, concrete, composites, and rubber applications with comprehensive technical support

Product Portfolio

Graphene Solutions by Application

Tailored formulations engineered for specific industry requirements

Industrial lubricant oil with graphene additives showing reduced friction properties

Dosage

0.005-1% recommended dosage

GraphLube™ Series

Lubricant Additives

Advanced graphene nanoplatelets engineered for oil-based and synthetic lubricants

Key Applications

  • Automotive engine oils
  • Industrial hydraulic fluids
  • Gear oils
  • Metalworking fluids
  • Grease formulations

Performance Benefits

  • Reduce friction coefficient by 20-40%
  • Extend equipment service life
  • Lower operating temperatures
  • Decrease maintenance intervals
  • Improve fuel efficiency
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Why Graphene

Technical Advantages

How graphene nanomaterials outperform traditional additives at the molecular level

01

Molecular-Level Enhancement

Graphene integrates at the molecular level, creating stronger bonds between material matrices unlike macro-scale additives that simply fill voids.

Performance Comparison

Traditional

Surface-level mixing

Graphene

Molecular integration

+300% bonding efficiency

01 Molecular-Level Enhancement – graphene molecular structure and performance visualization

01

02

Extreme Surface Area

With 500-700 m²/g surface area, graphene provides maximum contact points for load distribution and stress transfer throughout the material.

Performance Comparison

Traditional

10-50 m²/g (carbon black)

Graphene

500-700 m²/g

+1000% active surface

02 Extreme Surface Area – graphene molecular structure and performance visualization

02

03

Superior Thermal Management

Graphene's 5000 W/mK thermal conductivity enables rapid heat dissipation, preventing hotspots and thermal degradation in high-performance applications.

Performance Comparison

Traditional

0.2-0.8 W/mK (polymers)

Graphene

5000 W/mK

+6000x heat transfer

03 Superior Thermal Management – graphene molecular structure and performance visualization

03

04

Unprecedented Strength

With 130 GPa tensile strength and 1 TPa elastic modulus, graphene reinforces materials while maintaining flexibility and reducing weight.

Performance Comparison

Traditional

3-5 GPa (steel)

Graphene

130 GPa

+2500% tensile strength

04 Unprecedented Strength – graphene molecular structure and performance visualization

04

See the Difference in Your Application

Request a comparative analysis to see how graphene can enhance your specific materials

Request Analysis
Implementation Guide

Integration Process

Our proven six-step process ensures seamless integration of graphene additives into your production

Key Activities

  • Review current material formulations
  • Identify performance bottlenecks
  • Define target improvements
  • Discuss regulatory requirements
  • Establish project timeline
R&D Services

Custom Formulations

Tailored graphene solutions engineered for your unique material challenges

Surface Treatment Options

Customize graphene surface chemistry for optimal compatibility with your matrix material

  • Hydrophobic/hydrophilic modifications
  • Functional group attachments
  • Polymer grafting
  • Silane coupling agents

Particle Engineering

Precise control over graphene morphology and dimensions

  • Custom particle size distribution
  • Layer number control (single to few-layer)
  • Aspect ratio optimization
  • Porosity engineering

Hybrid Additive Systems

Combine graphene with complementary nanomaterials for synergistic effects

  • Graphene + carbon nanotubes
  • Graphene + metal nanoparticles
  • Graphene + ceramic nanoparticles
  • Multi-functional composites

Application-Specific Grades

Formulations engineered for your exact use case and performance requirements

  • Temperature resistance optimization
  • Chemical compatibility tuning
  • Electrical property targeting
  • Regulatory compliance assurance

R&D Partnership Approach

Our materials scientists work directly with your team to develop custom graphene formulations that meet your exact specifications and performance targets.

Dedicated Technical Team

PhD-level materials scientists assigned to your project

State-of-the-Art Laboratory

Advanced characterization and testing equipment

Rapid Development Cycle

Typical formulation development in 2-20 weeks

IP Protection

Confidentiality agreements and custom formulation exclusivity

Discuss Your Project
Materials science laboratory with advanced equipment for graphene formulation development and testing

50+

Custom Formulations

Ready to Enhance Your Materials?

Download our complete product catalog or speak with a technical specialist