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Model No:CEI-NS-KJ30
Nano spectrophotometers have emerged as powerful tools in the field of analytical chemistry, enabling scientists to delve into the nanoscale realm of molecular analysis. These sophisticated instruments play a pivotal role in various scientific disciplines, including biochemistry, biophysics, and nanotechnology. In this comprehensive guide, we will explore the principles, applications, and advancements of nano spectrophotometers, shedding light on their significance in modern research. Advances in nano spectrophotometry include the integration of multimodal spectroscopy, combining techniques like UV-Vis, fluorescence, and circular dichroism. This allows researchers to gather comprehensive data on sample properties. Nano spectrophotometers have revolutionized analytical capabilities in nanoscale research, providing precise and reliable data for a diverse range of applications. As technology continues to advance, these instruments will play an increasingly significant role in shaping the future of nanoscience and technology. Researchers and scientists alike can leverage the power of nano spectrophotometry to unlock new frontiers in understanding and manipulating matter at the nanoscale.
A Nano Spectrophotometer is a specialized instrument used to measure the absorption and concentration of nucleic acids (DNA, RNA) and proteins in very small volumes, typically in the nanoliter range. It is commonly employed in molecular biology, biotechnology, and life science research for various applications, including DNA/RNA quantification, protein analysis, and purity assessment of biomolecules.
General Specification
Light Source Xenon Flash Lamp
Detector CCD (2,048 Pixels), (reference beam available)
Wavelength Accuracy ±1 nm
Wavelength Range 190 – 1,100 nm
Spectral Resolution 0.3 nm
Dimension 220 x 280 x 220 mm, 8.6 x 11.0 x 8.6 in
Weight 5 kg
Operator Voltage 100 – 240 V, 50 – 60 Hz
Power Consumption 80 – 100 W
1 Warranty Year
LCD Touch Panel 7.0 in
Nano Volume Specification
Absorbance Precision 1% at 100 ng/µl
Absorbance Range 0 – 300 Abs. (10 nm equivalent)
Detection Limit 2 ng/µl (dsDNA)
Maximum Concentration 15,000 ng/µl (dsDNA)
Measurement T 5 sec ime
1 µl Minimum Sample Size
Path Length 0.01 – 1.2 mm (Auto-ranging)
Cuvette Specification
Absorbance Range 0.002 – 2.0 Abs.
Measurement time 3 sec
Beam height 8.5mm