Introducing Our Versatile 4 mm In-Line Flow Cells: Unleashing the Power of Precise Analysis
Explore the exceptional capabilities of our 4 mm In-Line Flow Cells, meticulously designed to meet the diverse needs of researchers and scientists. With customizable options and unparalleled performance, these flow cells empower you to achieve accurate and reliable analysis. Let’s delve into the remarkable features and benefits of our 4 mm In-Line Flow Cells:
1. Versatile Pathlength Options: Our 4 mm In-Line Flow Cells offer two pathlength options: 4 mm and 16 mm. This flexibility allows you to choose the optimal pathlength based on your specific analytical requirements. Whether you need high sensitivity or broader linear range, our flow cells provide the versatility to adapt to various sample types and concentration ranges.
2. Four Windows for Enhanced Analysis: Equipped with four windows, our flow cells ensure optimal light transmission and efficient sample analysis. The four-window configuration enhances signal-to-noise ratio, improves accuracy, and enables precise measurements of absorbance or fluorescence in your samples. This feature is particularly advantageous in applications where multiple parameters or wavelengths need to be monitored simultaneously.
3. Robust Construction and Chemical Resistance: Crafted with precision, our 4 mm In-Line Flow Cells boast a molded design, guaranteeing exceptional quality and durability. Built to withstand the harshest laboratory conditions, these flow cells exhibit superior resistance to organic solvents and corrosive chemicals. Rest assured that your samples will be analyzed reliably and consistently, even in challenging experimental environments.
4. Customizable Tubulation Options: We understand the importance of seamless integration with your experimental setup. Our 4 mm In-Line Flow Cells offer customizable tubulation options, allowing you to select the precise connectors and fittings that align with your system requirements. This customization ensures a seamless connection, optimal flow, and efficient data acquisition, saving you time and effort.
5. Spectral Range for Comprehensive Analysis: With a spectral range spanning from 200 nm to 2,500 nm, our flow cells enable comprehensive analysis across a wide range of wavelengths. Whether you are investigating UV-visible or near-infrared regions, our flow cells ensure accurate and reliable data collection, empowering you to gain valuable insights from your samples.
Our 4 mm In-Line Flow Cells combine precision, versatility, and durability to elevate your analytical capabilities. With pathlength options, multiple windows, robust construction, customizable tubulation, and a broad spectral range, these flow cells provide the ideal platform for precise analysis. At Aireka Scientific, we offer customizable specifications to ensure our flow cells perfectly match your experimental needs. Unleash the power of our 4 mm In-Line Flow Cells and unlock new possibilities in your research and scientific endeavors.
What’s the use of flow cells?
Flow cells have a wide range of applications in scientific and laboratory settings due to their unique design and functionality. Here are some key uses of flow cells:
- Spectrophotometry: Flow cells are commonly employed in spectrophotometry, where they enable the measurement of absorbance or transmittance of light through a sample. By passing the sample through the flow cell, researchers can obtain valuable information about the composition, concentration, and properties of the sample.
- Chemical Analysis: Flow cells are instrumental in various chemical analysis techniques, such as liquid chromatography and flow injection analysis. These techniques involve the continuous flow of a sample through the flow cell, allowing for real-time monitoring and detection of analytes.
- Biological Research: Flow cells find extensive use in biological research, particularly in applications such as cell counting, cell culture monitoring, and enzyme kinetics. The controlled flow of biological samples through the flow cell enables researchers to study cellular processes, perform viability assessments, and analyze enzymatic reactions.
- Flow Cytometry: Flow cells are integral components of flow cytometers, powerful instruments used for cell analysis and sorting. In flow cytometry, cells suspended in a fluid are passed through the flow cell one at a time, allowing for the characterization and sorting of cells based on their physical and biochemical properties.
- Microfluidics: Flow cells play a crucial role in microfluidic systems, which manipulate small volumes of fluids for various applications. Microfluidic flow cells enable precise control of fluid flow, mixing, and reactions, making them valuable tools in fields such as drug discovery, genomics, and diagnostics.
- Environmental Monitoring: Flow cells are utilized in environmental monitoring systems to analyze water quality, detect pollutants, and assess the health of ecosystems. By continuously flowing water samples through flow cells, researchers can monitor parameters such as dissolved oxygen, nutrient levels, and pollutant concentrations.
The use of flow cells offers several advantages, including:
- Real-time Monitoring: Flow cells facilitate continuous and real-time monitoring of samples, enabling researchers to capture dynamic changes and obtain immediate results.
- Sample Conservation: Flow cells require only small sample volumes, making them suitable for applications where sample conservation is crucial, such as precious or limited sample scenarios.
- Repeatability and Precision: Flow cells provide consistent and repeatable measurements, ensuring reliable and accurate data acquisition.
- Flexibility and Customization: Flow cells come in various sizes, pathlengths, and designs, allowing for customization to suit specific experimental requirements.
In summary, flow cells are versatile tools that enable the controlled flow of samples, facilitating a wide range of scientific analyses, measurements, and experiments. Their applications span across disciplines such as chemistry, biology, biotechnology, environmental science, and more, making them indispensable in research and laboratory settings.
0 | 1 | 2 | 3 | ||
---|---|---|---|---|---|
*Molded | *Fused | *Bonded / Glued | |||
UV vis ( 190- 2500 nm) | Yes | Yes | Yes | ||
Transmission Matched | Yes | Yes | Yes | ||
Transmission > 80% | Yes | Yes | Yes | ||
Resistant to Acids and Bases (except hydrofluoric acid) | Yes | Yes | No | ||
Resistant to Organic Solvents | Yes | Yes | No | ||
Usable upto 500°C (932°F) | Yes | Yes | No | ||
Usable upto 1200°C (2192°F) | Yes | No | No | ||
0 Variations Reading | On Request | No | No | ||
Fabrication | Molded | Assembled with Quartz Powder | Assembled with Glue | ||
Adhesives | No | No | Yes | ||
Storage | Short Term Storage | Clean After Use | Clean After Use | ||
Available Material | ES Quartz Material | ||||
Note | Molded and fused cuvettes and cells are assembled by direct fusion without the use of adhesives throughout the production process. This guarantees resistance against corrosive chemicals and high temperature. Each quartz cuvette and cell has excellent transmission from 190nm to 2500nm. |
To the best of our knowledge, the information provided here is accurate. However, Aireka Scientific assumes no liability for the accuracy of this page. The values provided are typical at the time of manufacture and may vary over time and from batch to batch. All products are for laboratory and research and development use only, and may not be used for any other purpose including health care, pharmaceuticals, cosmetics, food, or commercial applications.
There are no reviews yet.