FYTRONIX ELEKTRONIK TEKNOLOJİLERİ A.S

Advanced Hydrothermal Synthesis System

  • Product Code: Advanced-Hydrothermal-Synthesis-System
  • Availability: In Stock

   Advanced Hydrothermal Synthesis System


  • Advanced Hydrothermal Synthesis System

SOLAR PHYSICS TECHNOLOGIES

Advanced Hydrothermal Synthesis & Nanomaterial Production Systems

The SOLARPHYSTECH Hydrothermal System is a fully functional production solution capable of synthesizing a wide range of materials—from organic compounds to metal oxides—using solution-based methods. The system is uniquely designed to produce materials both in nanoparticle powder form and as thin film coatings on any substrate.

 

System Components

  1. High-Pressure Reactor (Autoclave)
  2. Precision PID Temperature Control Unit
  3. Hydrothermal PTFE Sample Holder

  

Capabilities

The SOLARPHYSTECH system allows for the control of material morphology and crystal structure with atomic precision:

  • Size Control: Fine-tuning of nanodimensions through precise adjustment of reaction time and temperature.
  • Structural Control: Phase and morphology control via internal/external pressure, pH balance, and heating rates.
  • Compositional Control: Design of next-generation hybrid materials by manipulating atomic ratios.

Technical Specifications

Feature

Description

Temperature Range

Room Temperature (RT) to 280 °C

Sample Capacity

100 ml PTFE or Black Carbon TFE (200 ml, 500 ml, optional)

Heating System

Homogeneous heating in XYZ directions

Control Mechanism

PID Temperature Controller & Heating Rate Management

Pressure Management

Automatic adjustment via temperature, volume, or external gas

Time Management

Automatic timer from 1 hour to 24+ hours


Application Areas & Synthesized Materials

The system is engineered to synthesize critical materials required for industries ranging from energy storage to biomedical applications:

  • Energy: Battery materials, solar cell components, and chalcogenides.
  • Electronics: Metal oxide semiconductors, ferroelectric, and piezoelectric materials.
  • Nanotechnology: Graphene, Graphene Oxide (GO), and Boron-based structures (BN, Boron Carbide).
  • Biomedical: Bioceramics, bioglass, and polymer nanocomposites. Metal oxide frameworks (MOFs)
  • Coatings: Ability to grow micro/nanostructured thin films on any substrate.

The system ensures a safe working environment with minimal user intervention, featuring automatic "Switch On-Off" and "Hold" functions that activate upon reaction completion.

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