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Fosfluconazole Impurity 3

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For Research Use Only | Not For Clinical Use
CATAPB06066
Synonyms2-(2-fluorophenyl)-1-(1H-1,2,4-triazol-1-yl)-3-(4H-1,2,4-triazol-4-yl)propan-2-yl dihydrogen phosphate
Molecular Weight368.08
Molecular FormulaC13H14FN6O4P

What is the synonym for Fosfluconazole Impurity 3?

The synonym for Fosfluconazole Impurity 3 is 2-(2-fluorophenyl)-1-(1H-1,2,4-triazol-1-yl)-3-(4H-1,2,4-triazol-4-yl)propan-2-yl dihydrogen phosphate.

What is the molecular weight of Fosfluconazole Impurity 3?

The molecular weight of Fosfluconazole Impurity 3 is 368.08.

What is the molecular formula of Fosfluconazole Impurity 3?

The molecular formula of Fosfluconazole Impurity 3 is C13H14FN6O4P.

What are the components of the molecular formula of Fosfluconazole Impurity 3?

The components of the molecular formula of Fosfluconazole Impurity 3 are carbon (C), hydrogen (H), fluorine (F), nitrogen (N), oxygen (O), and phosphorus (P).

How many carbon atoms are present in the molecular formula of Fosfluconazole Impurity 3?

There are 13 carbon atoms present in the molecular formula of Fosfluconazole Impurity 3.

What is the chemical structure of Fosfluconazole Impurity 3?

The chemical structure of Fosfluconazole Impurity 3 consists of a fluorophenyl group, a triazol-1-yl group, a triazol-4-yl group, and a phosphate group.

How many nitrogen atoms are present in the molecular formula of Fosfluconazole Impurity 3?

There are 6 nitrogen atoms present in the molecular formula of Fosfluconazole Impurity 3.

What is the role of Fosfluconazole Impurity 3?

Fosfluconazole Impurity 3 is a specific impurity related to the drug fosfluconazole, which is used as an antifungal medication.

What is the significance of studying Fosfluconazole Impurity 3?

Studying Fosfluconazole Impurity 3 is important for ensuring the purity and quality of the drug fosfluconazole, as impurities can affect the effectiveness and safety of a medication.

How is Fosfluconazole Impurity 3 identified and characterized in pharmaceutical research?

Fosfluconazole Impurity 3 is identified and characterized using techniques such as spectroscopy (e.g., NMR, MS), chromatography (e.g., HPLC), and other analytical methods to determine its structure and quantify its presence in pharmaceutical samples.

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