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Pitavastatin Impurity 82

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For Research Use Only | Not For Clinical Use
CATAPB01416
Synonyms(2-aminophenyl)(4-fluorophenyl)methanol
Molecular Weight217.24
Molecular FormulaC13H12FNO

What is the chemical name of Pitavastatin Impurity 82?

The chemical name of Pitavastatin Impurity 82 is (2-aminophenyl)(4-fluorophenyl)methanol.

What is the molecular weight of Pitavastatin Impurity 82?

The molecular weight of Pitavastatin Impurity 82 is 217.24.

What is the molecular formula of Pitavastatin Impurity 82?

The molecular formula of Pitavastatin Impurity 82 is C13H12FNO.

What is the structure of Pitavastatin Impurity 82?

The structure of Pitavastatin Impurity 82 is characterized by a 2-aminophenyl group attached to a 4-fluorophenyl group which is Further connected to a methanol group.

What is the key feature of Pitavastatin Impurity 82?

The key feature of Pitavastatin Impurity 82 is the presence of a fluorine atom in the phenyl group.

What class of compounds does Pitavastatin Impurity 82 belong to?

Pitavastatin Impurity 82 belongs to the class of organic compounds known as phenylmethanols.

How is Pitavastatin Impurity 82 related to the drug pitavastatin?

Pitavastatin Impurity 82 is an impurity or byproduct that may be present during the synthesis or manufacturing of the drug pitavastatin.

What is the importance of identifying and characterizing impurities like Pitavastatin Impurity 82?

Identifying and characterizing impurities like Pitavastatin Impurity 82 is crucial for ensuring the safety and efficacy of the final drug product.

How is Pitavastatin Impurity 82 typically detected and quantified?

Pitavastatin Impurity 82 is typically detected and quantified using analytical techniques such as high-performance liquid chromatography (HPLC) or mass spectrometry.

What are some potential methods for minimizing the presence of impurities like Pitavastatin Impurity 82 in the synthesis of pharmaceuticals?

Some potential methods for minimizing the presence of impurities like Pitavastatin Impurity 82 include optimizing reaction conditions, using high-quality starting materials, and employing purification techniques like recrystallization.

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