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Analytical Chemistry

Analysis Reagents

ACETAMINOPHEN-D3

(60902-28-5)
Labelled Acetaminophen (A161220). Analgesic; antipyretic.

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AMBERLITE(R)IRP-64ION-EXCHANGERESIN

(80892-32-6)
Weak acid cation exchange resin, used for taste masking and drug stabilization, also used as a cationic drug carrier, controlled release preparation (such as a carrier for certain basic (cationic) drugs and related substances), etc. For research use only.

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Fenbendazole-d3

(1228182-47-5)
Labelled Fenbendazole (F246750). An anthelmintic (Nematodes).

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Sulfolex-13C6

(1189426-16-1)
Labeled Sulfadiazine, Sulfadiazine Stable Isotope;Labeled Sulfadiazine, intended for use as an internal standard for the quantification of Sulfadiazine by GC- or LC-mass spectrometry.

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LEWATIT CNP-105

(56940-15-9)
Weak acid cation exchange resin, especially suitable for purification of antibiotics, alkaloids, peptides, vitamins, and as a carrier for immobilizing enzymes.

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2,3-Dihydroxybiphenyl

(1133-63-7)
ChEBI: A member of the class of hydroxybiphenyls that is 1,1'-biphenyl substituted by hydroxy groups at positions 2 and 3.

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Cirsilineol

(41365-32-6)
ChEBI: A trimethoxyflavone that is flavone substituted by methoxy groups at positions 6, 7 and 3' and hydroxy groups at positions 5 and 4' respectively.

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Analytical reagents generally refer to chemical reagents, which are relatively standard substances for chemical research and component analysis, and are important conditions for scientific and technological progress. They are widely used in the synthesis, separation, qualitative and quantitative analysis of substances. Chemicals are indispensable in the daily work of factories, schools, hospitals and research institutes.

Frequently Asked Questions

What are Analysis Reagents and why are they important in laboratories?

Analysis reagents are high-purity chemical substances used to detect, measure, or analyze the composition of samples in scientific research, quality control, and diagnostic testing. They play a critical role in ensuring accuracy, reproducibility, and reliability in analytical procedures such as titrations, chromatography, spectrophotometry, and immunoassays. Using certified analysis reagents helps maintain compliance with regulatory standards like ISO, USP, or EP.

How do I choose the right grade of analysis reagent for my application?

Selecting the appropriate grade of analysis reagent depends on your specific application:1. Analytical Reagent (AR) Grade: Suitable for general laboratory analysis and educational purposes.2. ACS Grade: Meets American Chemical Society specifications; ideal for precise quantitative analysis.3. HPLC or GC Grade: Ultra-pure solvents for chromatographic techniques.4. USP/NF or EP Grade: Required for pharmaceutical and clinical applications.Always verify purity levels, impurity profiles, and certification documentation before purchase.

What is the difference between analytical reagents and laboratory chemicals?

While all analytical reagents are laboratory chemicals, not all laboratory chemicals qualify as analytical reagents. Analytical reagents are manufactured to strict purity standards with documented impurity limits, making them suitable for quantitative and qualitative analysis. In contrast, general laboratory chemicals may have higher impurity levels and are typically used for cleaning, synthesis, or non-critical tasks where precision isn’t required.

How should analysis reagents be stored to maintain their integrity?

Proper storage is essential to preserve the stability and performance of analysis reagents:1. Keep in original, tightly sealed containers away from light, moisture, and air.2. Store at recommended temperatures—many require refrigeration (2–8°C) or freezing (–20°C).3. Segregate incompatible chemicals (e.g., acids from bases) to prevent reactions.4. Label containers clearly with opening date and expiration.Following manufacturer guidelines ensures reagent reliability and extends shelf life.

Can expired analysis reagents still be used in experiments?

Using expired analysis reagents is strongly discouraged, especially in regulated or precision-sensitive applications. Over time, reagents may degrade, absorb moisture, oxidize, or form impurities that compromise test accuracy and safety. While some stable compounds might retain functionality shortly after expiry, there’s no guarantee of performance. Always adhere to expiration dates and conduct validation tests if reuse is considered under controlled conditions.

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