Exoid (TRPS) enables accurate and reliable zeta potential measurements compared to other methods.
Exoid (TRPS) enables accurate and reliable zeta potential measurements compared to other methods. 【Features】 ■ Simultaneous measurement of zeta potential and particle size for each particle ■ Unbiased results obtained through true zeta potential distribution ■ Measurement of charge at physiological strength in buffer ■ Measurement principle is the electrical resistance nanopulse method (TRPS) ■ Measurement of changes in surface charge *For more details, please refer to the materials or feel free to contact us.
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basic information
Measurement range: 40 nm to 10 μm Minimum sample volume: 30 μL or more Main power supply: AC100V/100W Size and weight: W × 350 × D 350 × H 320 mm / 10.5 kg APS Pressurization/Suction pressure range: 0.01 kPa to 2.0 kPa Pressurization/Suction pressure setting: Standard mode (range of 0.2 kPa to 2.0 kPa): 0.05 kPa step Fine mode (range of 0.01 kPa to 0.2 kPa): 0.05 kPa step Recommended PC specifications OS: Windows 10 Professional (64bit) Processor: Fourth generation Core i7/i5 recommended Memory: 8 GB RAM Video memory (VRAM capacity): 1 GB or more recommended HDD: Minimum 50 GB or more recommended Data communication: USB 2.0 port
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Applications/Examples of results
**Application** - High-sensitivity detection achieved compared to DLS (Dynamic Light Scattering) - High correlation with TEM compared to optical measurement methods - Quantification of liposome aggregation by size distribution and concentration - Individual measurement of surface charge of nanoparticles - Nano-bubble measurement for the development of new DDS for cleaning and sterilization - Extracellular vesicle measurement for rapid diagnosis and disease marker development - Adenovirus measurement for vaccine and viral vector development - Interaction analysis with viruses and dissolved substances through nano-bacteria measurement - Confirmation of bacteria and comparison of their quantities - Confirmation of bacteria with different shapes: measurement of Bacillus subtilis and spores - Evaluation of biofilm formation - Evaluation of food: comparison of milk and processed milk - Measurement of core-shell nanoparticles - Evaluation of pigments: comparison of pigment dispersion - Measurement of tap water: high precision measurement even for low concentration samples - Real-time monitoring of inter-particle interactions in situ *For more details, please refer to the PDF document or feel free to contact us.*
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Our researcher customers are dedicated to their research day and night to "change the world" and "create the future." The products we handle reach the hands of researchers, contributing to the advancement of science and technology in Japan. Our company plays a role in creating such an exciting future and has been supporting researchers in the niche fields of environment, materials, and biotechnology as a top partner for 50 years since our establishment.