Main Features:
◎ Remarkable Chemical and Structural Stability
Diamond exhibits exceptional resistance to chemical reactions, maintaining its integrity even under highly corrosive conditions (such as strong acids or bases), thanks to its rigid sp³ carbon lattice. This ensures reliable performance in extreme environments over extended periods.
◎ Minimal Residual Current
Boron-doped diamond (BDD) electrodes demonstrate negligible non-faradaic currents, which enhances measurement precision in applications requiring high sensitivity, such as detecting low-concentration biomarkers or environmental pollutants.
◎ Extended Electrochemical Stability Range for Water Splitting
Unlike traditional electrodes (e.g., platinum or glassy carbon), diamond remains stable at both highly oxidizing and reducing potentials, facilitating efficient water electrolysis (including oxygen and hydrogen generation) without material breakdown.
◎ Wide-Range Optical Transparency (UV to Far-Infrared)
Ultra-thin diamond coatings allow light transmission across an extensive wavelength range, making them valuable for photonic applications, including ultraviolet detectors, infrared optics, and real-time electrochemical-optical analysis.
◎ Negligible Magnetic Interference
Due to its inherent diamagnetic properties, diamond does not disrupt magnetic fields, making it suitable for integration with MRI systems or experiments involving magnetic field-dependent electrochemical processes.
◎ Superior Biocompatibility (sp³ Carbon Network)
The non-reactive sp³-bonded carbon surface inhibits biological adhesion and immune reactions, rendering it highly compatible with medical implants, neural probes, and in vivo sensing devices.
Main parameter:
Substrate | silicon/ niobium/ tantalum/ foam ceramic |
BDD Electrode Shape | rectangular/ mesh/ grille/ customized |
Coated surface | single/ double sides |
Electrocatalytic Reaction Rate Constant | 10-4~10-3cm·s-1 |
Charge Transfer Impedance | <50Ω |
Grain Size | <2μm |
Film Thickness | 8-20μm |
Conductivity | >100 s·cm-1 |
Oxygen Evolution Potential | 2.0V~2.9V |
Hydrogen Evolution Potential | -2.0V~-1.0V |
Boron-Doped Concentration | 1019 cm-3 |
BDD Electrode Size | 5×5~500x500mm |
RoHS Compliance Test Report | CE RoHS available |
| Ozone Module Model | Dimensions (mm) | Ozone Module Model | Dimensions (mm) |
|---|---|---|---|
| O-F2250-2501 | 77 × 40 × 36 | O-I1100-2504 | 25 × 16 × 6 |
| O-F2250-2502 | 72 × 37 × 19 | O-I1100-2509 | 48 × 16 × 6 |
| O-F2195-2501 | 72 × 36 × 18 | O-F3112.5-2506 | Φ 11.5 × 18 |
| O-F3195-2506 | Φ 13.5 × 28 | Others | Customized 5×5 ~ 500×500 |
| Standard Wastewater Device Parameter | BDD Sizes | Standard Wastewater Device Parameter | BDD Sizes |
|---|---|---|---|
| Beaker-type device | 100 × 50 × 3 mm | Baffle-type device | 80 × 40 × 3 mm |
| Module-type device | 240 × 65 × 4 mm | Integrated device | 240 × 130 × 3 mm 240 × 130 × 5 mm |
| Others | 25×8×1 mm / 320×180×5 mm / 320×90×5 mm / 5×5 – 500×500 mm Custom | ||
Boron-Doped Diamond(BDD) Dedicated To A Revolutionary Upgrade In The Field Of Ozone Disinfection & sterilization
Industry Solutions Case: Household Villa kitchen and catering disinfection
Ozone Application areas:
Research shows, BDD ozone technology also can effectively application in wastewater treatment of disinfection & sterilization:
- Medical infection control
- Medical environment disinfection
- Commercial laundry
- Commercial kitchen
- Water disinfection
- Agricultural disinfection
- Environmental public health
- Disinfection of customs personnel and goods;
Disinfection of kindergartens, school grounds and teaching AIDS; Hotel, shopping mall, restaurant site disinfection…




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