4-Pyridinecarboxylic acid, anhydride


Chemical Name: 4-Pyridinecarboxylic acid, anhydride
CAS Number: 7082-71-5
Product Number: AG003R40(AGN-PC-0JLTB6)
Synonyms:
MDL No:
Molecular Formula: C12H8N2O3
Molecular Weight: 228.2035

Identification/Properties


Properties
MP:
133 °C

Safety Information


GHS Pictogram:
Signal Word:
Warning
UN#:
-
Hazard Statements:
H315-H319-H335
Precautionary Statements:
P261-P305+P351+P338
Class:
-
Packing Group:
-

NMR Spectrum


Other Analytical Data


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Chemical Structure



Isonicotinic anhydride is a versatile chemical compound widely used in chemical synthesis, particularly in the field of organic chemistry. This compound is known for its ability to undergo various reactions that lead to the formation of new compounds with diverse properties and functionalities.One of the key applications of isonicotinic anhydride in chemical synthesis is its role as a versatile building block in the preparation of heterocyclic compounds. By reacting with different nucleophiles or electrophiles, isonicotinic anhydride can be utilized to construct a variety of heterocyclic structures, such as pyridines, pyrazoles, and pyrimidines. These heterocyclic compounds have numerous applications in the pharmaceutical industry, where they serve as the backbone of many biologically active molecules.Additionally, isonicotinic anhydride can also be employed as a reagent for the acylation of amines and other nucleophiles. Through acylation reactions, this compound allows for the introduction of different functional groups onto organic molecules, enabling chemists to modify the properties of compounds or create novel structures with specific chemical reactivity.Furthermore, isonicotinic anhydride has been utilized in the synthesis of various bioactive compounds and natural products. Its versatility in forming diverse chemical bonds makes it a valuable tool for chemists seeking to design and create new molecules with desired biological activities.Overall, the application of isonicotinic anhydride in chemical synthesis highlights its significance as a key reagent in the preparation of complex organic molecules with important implications in drug discovery, material science, and other areas of chemical research.