Surface Zeta Potential Analyzer LB-10ZPA

Surface Zeta Potential Analyzer LB-10ZPA

Surface Zeta Potential Analyzer LB-10ZPA can measure particles from 0.3 nm to 15 µm at angles of 90° and 12°. It operates across a temperature range of -15°C to 120°C, accommodating various thermal environments for testing. It features an automatic temperature controller for stable operation in different thermal environments. Our analyzer offers unlimited zeta potential measurements, allowing for precise assessments across various sample types.

$ 49275

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Specifications

Particle Measurement Angle 90° and 12°
Particle Size Range 0.3 nm to 15 µm
Zeta Potential Range No practical limit
Zeta Size Range 1 nm to 120 µm
Principles Dynamic Light Scattering (DLS)
Static Light Scattering (SLS)
Electrophoretic Light Scattering (ELS)
Temperature Control Range -15°C to 120°C
Temperature Control Accuracy ± 0.1°C
Minimum Sample Size 3 µL
Minimum Concentration 0.1 mg/mL
Maximum Concentration 40% w/v
Mobility Range Min 0, max no limit
Maximum Conductivity 270 mS/cm
Electrode Type Insert plate, U-shaped capillary.
Molecular Weight Range 340 Da to 2 × 10^7 Da
Advanced Functions Viscosity, Refractive Index, Transmittance, Second Virial Coefficient, Interparticle Interaction, Aggregation Index
Light Source Fiber-coupled solid laser, 50 mW, 638 nm
Light Intensity Adjust Auto, 0.0001% to 100%
Correlator High-speed digital, adaptive channel
Detector High-sensitivity APD
Sampling Method Manual/automatic
Sample Pool Options 12 mm dish, 3 µL capillary, 40 µL microcell
Storage Temperature Range 5°C to 40°C
Storage Humidity Range 10% to 80% (no condensation)
Standards ISO 13321, ISO 22412:2017, ISO 13099
Power Supply AC 100V-240V, DC 24V/5A
Dimensions (L × W × H) 365 × 475 × 180 mm
Weight 16 kg

Features

  • Integrated laser and illumination technology
  • High-sensitivity photon detector
  • Dry gas purge technology eliminates condensation
  • High-speed digital correlator

Applications

Surface Zeta Potential Analyzer LB-10ZPA is used to analyze colloidal stability in pharmaceuticals, nanotechnology, and material science, as well as in biotechnology, environmental science, and food science.

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