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Boron Doped Diamond Electrode: Single-Side Coated BDD on Silicon for Wastewater Treatment
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Single Crystal HPHT Synthetic Diamond Plate for Cutting Tools
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Single crystal diamond CVD (chemical vapor deposition) refers to a type of diamond that is produced using the CVD process. In this process, a mixture of carbon-containing gases is decomposed under controlled conditions, resulting in the formation of a single crystal diamond layer on a substrate.

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In summary, single crystal diamond CVD is a type of synthetic diamond that is produced using the CVD process and is characterized by its exceptional hardness and thermal conductivity. It has a wide range of applications in industries such as manufacturing, electronics, and optics.
 
 
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Single crystal diamond CVD (chemical vapor deposition) refers to a type of diamond that is produced using the CVD process.

Single crystal diamond CVD is known for its exceptional hardness and thermal conductivity, which makes it useful for a range of industrial and scientific applications, such as cutting and grinding tools, heat spreaders, and optical components.

Compared to other forms of synthetic diamond, single crystal diamond CVD has a highly ordered crystal structure, which gives it improved physical and mechanical properties. This makes it a desirable material for a range of high-performance applications, where its hardness and thermal conductivity are important factors.
 
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The large size diamond crystal is an unprocessed diamond single crystal, which is made by high temperature and high pressure method. The size that our company can provide is generally 1mm -5mm large size single crystal with excellent performance, high hardness, good wear resistance, good corrosion resistance and high chemical stability, meeting various finishing tools (including single point, sheet, rotary and roller dresser, etc.), special cutting The application requirements of tools and indenters can also be used in the application of jewelry, crafts and other applications.
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Boron Doped Diamond Electrode: Single-Side Coated BDD on Silicon for Wastewater Treatment

Our Boron Doped Diamond (BDD) electrode represents the pinnacle of electrochemical oxidation technology. Designed specifically for demanding water treatment applications, this single-side coated electrode combines the extraordinary properties of diamond with the practicality of a silicon substrate.
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  • BDD

  • INFI

Harness the Power of Boron Doped Diamond for Advanced Wastewater Treatment

Product Structure

Take a close look at this electrode. The black layer you see is boron-doped diamond — this is the active working surface that drives the electrochemical reaction. The silver layer underneath is high-purity single-crystal silicon, which serves as the conductive substrate and provides mechanical support. This two-layer design delivers exceptional performance while maintaining cost-effectiveness for industrial applications.


Why Boron Doped Diamond Excels

Boron Doped Diamond is widely recognized as one of the most efficient electrode materials available today. When 

boron atoms are introduced into the diamond lattice during chemical vapor deposition (CVD), the material transforms from an insulator into a highly conductive electrode while retaining all of diamond's extraordinary properties.


Key advantages of our BDD electrode include:

  • Extremely wide electrochemical window – significantly broader than conventional electrode materials, enabling the generation of powerful oxidizing species

  • Exceptionally low background current – providing high sensitivity and clean electrochemical signals

  • Superior chemical and dimensional stability – resistant to corrosion even in highly acidic or alkaline environments

  • Outstanding durability – the diamond layer maintains its integrity over prolonged use, with no peeling or degradation

  • Excellent corrosion resistance – outlasts conventional electrodes by a significant margin in harsh chemical environments


How It Works

When energized in water, our Boron Doped Diamond electrode generates highly reactive hydroxyl radicals (•OH) directly on its surface. These radicals are among the most powerful oxidants known, capable of completely mineralizing persistent organic pollutants into harmless carbon dioxide and water. Unlike traditional treatment methods, this electrochemical advanced oxidation process creates no secondary pollution and requires no additional chemical dosing.


Applications

Our BDD electrode is ideal for treating challenging industrial wastewaters, including:

  • Pharmaceutical and chemical manufacturing effluents

  • Textile dye wastewater

  • Petrochemical and refinery spent caustic streams

  • Landfill leachate

  • High-salinity and high-concentration organic wastewater

  • Electroplating and industrial process waters

In pilot studies, BDD technology has achieved significant reduction in Chemical Oxygen Demand (COD) for difficult waste streams like refinery spent caustics.


Customization Options

We offer our Boron Doped Diamond electrodes in various sizes and configurations to meet your specific requirements. Whether you need different dimensions, alternative substrates, or specialized doping levels, we can provide a customized solution tailored to your application.


Choose Performance That Lasts

When you choose our Boron Doped Diamond electrode, you're investing in a solution that delivers serious oxidation power with minimal maintenance. The diamond surface resists fouling, the silicon substrate provides stable support, and the result is reliable, long-term performance for your toughest water treatment challenges.

Contact us today to discuss your requirements and discover how our BDD electrode can transform your wastewater treatment process.


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