Advanced Hydrothermal Synthesis System
- Product Code: Advanced-Hydrothermal-Synthesis-System
- Availability: In Stock
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
- High-Pressure Reactor (Autoclave)
- Precision PID Temperature Control Unit
- 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.









