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Cefmetazole inner ester Ⅱ

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For Research Use Only | Not For Clinical Use
CATAPB03990
SynonymsN-((5aR,6S)-6-methoxy-1,7-dioxo-1,3,4,5a,6,7-hexahydroazeto[2,1-b]furo[3,4-d][1,3]thiazin-6-yl)-2-((1-methyl-1H-tetrazol-5-yl)thio)acetamide
Molecular Weight398.42
Molecular FormulaC13H14N6O5S2

What is the molecular weight of Cefmetazole inner ester Ⅱ?

The molecular weight of Cefmetazole inner ester Ⅱ is 398.42.

What is the molecular formula of Cefmetazole inner ester Ⅱ?

The molecular formula of Cefmetazole inner ester Ⅱ is C13H14N6O5S2.

What are the synonyms for Cefmetazole inner ester Ⅱ?

One of the synonyms is N-((5aR,6S)-6-methoxy-1,7-dioxo-1,3,4,5a,6,7-hexahydroazeto[2,1-b]furo[3,4-d][1,3]thiazin-6-yl)-2-((1-methyl-1H-tetrazol-5-yl)thio)acetamide.

What is the chemical structure of Cefmetazole inner ester Ⅱ?

The chemical structure of Cefmetazole inner ester Ⅱ is a hexahydroazeto[2,1-b]furo[3,4-d][1,3]thiazin ring with a tetrazolylthioacetamide side chain.

How many nitrogen atoms are present in the molecular formula of Cefmetazole inner ester Ⅱ?

There are 6 nitrogen atoms present in the molecular formula of Cefmetazole inner ester Ⅱ.

What functional groups are present in the structure of Cefmetazole inner ester Ⅱ?

The structure of Cefmetazole inner ester Ⅱ contains a methoxy group, a ketone group, a tetrazolyl group, a thioe- Ther group, and an amide group.

What is the stereochemistry of the hexahydroazeto ring in Cefmetazole inner ester Ⅱ?

The stereochemistry of the hexahydroazeto ring in Cefmetazole inner ester Ⅱ is (5aR,6S).

What role does the thioe- Ther group play in the structure of Cefmetazole inner ester Ⅱ?

The thioe- Ther group in Cefmetazole inner ester Ⅱ likely enhances its antibacterial properties due to its sulfur atom.

How does the molecular weight of Cefmetazole inner ester Ⅱ compare to Cefmetazole?

The molecular weight of Cefmetazole inner ester Ⅱ (398.42) is lower than that of Cefmetazole (418.47).

Why is Cefmetazole inner ester Ⅱ considered an ester derivative?

Cefmetazole inner ester Ⅱ is considered an ester derivative due to the presence of the methoxy group in its structure, which is a common characteristic of esters.

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