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Nanochemistry includes the synthesis, characterization and reaction of materials at nanoscale. Nanoparticles can offer a wide range of advantages over regular materials including unique or superior properties such as magnetic, optical, physical, electric, etc. Control of process parameters in nanochemistry is essential to ensure the desired shape, size, composition, surface structure and thus desired properties. Key synthesis parameters include temperature, mixing, concentrations and reaction time. Syrris offers a wide range of innovative batch and flow reactors for nanoparticle synthesis.
The award-winning systems, designed by chemists for chemists, present multiple benefits:

  • Narrow particle size distribution: Excellent mixing and temperature control leads to improved homogeneity of particle size
  • Rapid nanoparticle optimization: Process conditions such as temperature, time, mixing, reagent ratios and concentrations can be quickly varied
  • Reproducibility and automation: Additions, mixing, temperature, etc. can be fully controlled in automated fashion for seamless reproducibility
  • Easy to use: All products can be assembled, maintained and cleaned without tools
  • Simple scale up: Large range of reactor sizes (batch) and flow rates (continuous flow) provides the tools for moving from small scale process optimization to production

  • Nanoparticle Synthesis in Batch

    Batch chemistry product advantages:

  • Multiple sensors can be used for control (temperature, pH, turbidity, etc...)
  • No particle size restrictions
  • Easy scale-up
  • Choose from: automated Atlas jacketed reactor systems

  • Overview of nanoparticles successfully synthesized:

    # Nanoparticle synthesised Unique advantage using Syrris reactor system
    1 Nickel nanocubes Ability to accurately select desired shape. High quality material obtained.
    2 Silver nanowires Excellent monodispersity. Improved electric conductivity property.
    3 Gold nanocrystals Smaller average particle size obtained in flow. Easy process optimization.
    4 Silica beads Narrow size distribution. High reproducibility.
    5 Platinum nanoparticles deposited on carbon fibers Synthesis and deposition performed in one cycle. Control of the size by varying flow rate.
    6 Cadmium selenide quantum dots Synthesis, capping and functionalization done in one continuous process. Large scale synthesis.
    7 Superparamagnetic iron nanoparticles Small particle size. Fast throughput.
    8 Nickel tetrapods Previously unreported shape. Only seen in microreactors.
    9 Titanium oxide nanoparticles Faster synthesis. Excellent yields.

    View brochure

    Nanoparticle Synthesis in Flow Chemistry

    Flow chemistry product advantages:

  • Fast and reproducible mixing
  • Excellent heat transfer and accurate temperature control
  • Suitable for optimization and product on same system
  • Choose from: modular Asia flow systems
  • View Brochure Video


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    BE-1620 Drogenbos

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