TECHNICAL SERVICE

Core Functions & Research Directions

From technology incubation to demand fulfillment, we bridge the gap between innovation and industrialization.

Core Functions

What We Do

Technology Incubation

  • Focus on cutting-edge new material technology, select research projects with industrialization potential.
  • Provide full-chain incubation services from laboratory R&D to pilot testing.
  • Equip with professional teams for technology evaluation, process optimization and scale-up verification.
  • Build industry-university-research cooperation platforms to accelerate technology transfer to production.

Demand Fulfillment

  • Deep market research on pain points, develop products targeting specific needs.
  • Target industries: medical, automotive, electronics, energy and other leading sectors.
  • Provide customized material solutions, achieve import substitution and technology upgrades.
  • Establish industrialization bases, seamless transition from samples to mass production.

Research Directions

Five Core Areas

01

Nanomaterials

Technology & Applications

02

Polymer Materials

Technology & Applications

03

New Energy

Materials Technology

04

Biomedical

Materials Technology

05

AI + Materials

Intelligent Development

Nanomaterials Technology & Applications

Research Area 01

Nanomaterials Technology & Applications

Core Capabilities

  • Scale-up preparation and dispersion technology of nanomaterials.
  • Controllable preparation of low-dimensional nanomaterials (nanotubes, nanosheets, nanowires).
  • Surface modification, functionalization and composite technology of nanomaterials.
  • Analysis and testing of microstructure, mechanical and chemical properties.

Application Areas

  • Antibacterial functional materials (home appliances, building materials, textiles).
  • Transparent conductive coatings and films (energy-saving buildings, automotive glass).
  • Conductive additives (new energy batteries, electronic devices).
  • Self-cleaning and anti-corrosion coatings (outdoor facilities, precision instruments).
Polymer Materials Technology & Applications

Research Area 02

Polymer Materials Technology & Applications

Core Capabilities

  • Molecular design and synthesis of functional polymer materials.
  • Preparation and processing of nano-polymer composite materials.
  • Reactive extrusion modification technology, achieving material functionalization.
  • Development of flame retardant, antibacterial, antistatic and other functional masterbatches.

Application Areas

  • Home appliance shells and interiors (antibacterial, wear-resistant, lightweight).
  • Automotive engineering plastics (flame retardant, impact-resistant, high-strength).
  • Packaging materials (antibacterial, fresh-keeping, degradable).
  • Electronic electrical (insulation, thermal conductivity, electromagnetic shielding).
New Energy Materials Technology & Applications

Research Area 03

New Energy Materials Technology & Applications

Core Capabilities

  • Lithium-ion battery electrode materials (lithium iron phosphate, ternary materials, silicon anodes).
  • Fuel cell catalyst material preparation and processing.
  • Lithium-ion battery carbon anode materials.
  • All-solid-state electrolyte and solid-state battery technology.
  • Assembly, testing and system integration of power battery packs.

Application Areas

  • New energy vehicle power batteries.
  • Energy storage power stations and distributed energy systems.
  • Consumer electronics (3C product batteries).
  • Aerospace and special power sources.
Biomedical Materials Technology & Applications

Research Area 04

Biomedical Materials Technology & Applications

Core Capabilities

  • Preparation and characterization of biomedical nanomaterials (magnetic materials, drug carriers, tissue repair materials).
  • Preparation of nano-drug carriers and targeted delivery technology.
  • Separation, culture and preparation development of stem cells and exosomes.
  • Biosafety evaluation of nano-biological materials.
  • Recombinant proteins, collagen and other bioactive materials.

Application Areas

  • Drug targeted delivery and sustained-release systems.
  • Tissue engineering and regenerative medicine.
  • Medical anti-aging and skin repair.
  • In vitro diagnostic reagents and detection technology.
  • Cell and exosome therapy (capacity expansion stage).
  • Micro-nano factor therapy products: production and development.
AI Applications in Material Development & Production

Research Area 05

AI Applications in Material Development & Production

Core Capabilities

  • Material property prediction and formula optimization based on machine learning.
  • AI-assisted molecular design and new material screening, shortening R&D cycle.
  • Intelligent process parameter optimization, improving product consistency and yield.
  • Real-time monitoring and predictive maintenance of production processes.
  • Material genome database construction and knowledge graph applications.

Application Areas

  • Intelligent material R&D acceleration platform.
  • Production quality prediction and anomaly detection.
  • Supply chain optimization and demand forecasting.
  • Automated experimental design and data analysis.

Need Technical Support?

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