Ion chromatography analysis
Solid samples can leach ionic components into pure water! Trace ionic components in the aqueous solution can be detected with high sensitivity.
"Ion Chromatography Analysis" allows for qualitative and quantitative analysis of trace ionic components in aqueous solutions. Separation is performed using a column filled with ion exchange resin, and by measuring electrical conductivity, trace ionic components in aqueous solutions can be detected with high sensitivity. Solid samples are dissolved in pure water to measure the ionic components. 【Main Specifications】 ■ Anions: Cl-, Br-, NO2-, NO3-, organic acids, etc. ■ Cations: Li+, Na+, K+, Mg2+, Ca2+, etc. ■ Quantification limit: Approximately 100 ppb (varies by ion species) ■ Detection limit: Approximately 10 ppb (varies by ion species) ■ Detector: Electrical conductivity (suppressor type) *For more details, please refer to the PDF document or feel free to contact us.
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Chemical Analysis Concierge Service
We would like to introduce our "Chemical Analysis - Trust Us Service." When conducting component analysis of foreign substances or stains on products, it can be challenging to determine whether organic analysis or inorganic analysis is more suitable, and which specific analysis within organic or inorganic is the most appropriate. We provide a comprehensive service for customers who are struggling with the selection of analysis methods. Since each analysis device can measure different targets, it is necessary to choose a method that fits the purpose based on the information available.
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Composition analysis of raw materials for all-solid-state batteries.
This is an example of analyzing the purity of diphosphorus pentasulfide using ion chromatography for the composition analysis of raw materials for all-solid-state batteries. Diphosphorus pentasulfide is one of the raw materials used in the production of electrolytes for sulfide-based all-solid-state batteries. As a pretreatment for IC measurement, the powder of diphosphorus pentasulfide was dissolved in alkaline water and converted into phosphate and sulfide salts. Subsequently, the sulfide ions were oxidized to sulfate ions to prepare the IC measurement solution. For more details, please refer to the published catalog. We encourage you to take a look.