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503-64-0

cis-Crotonic acid

Catalog#: AR00DRZA  |   CAS#: 503-64-0  |   MDL#: MFCD03002777  |   MF: C4H6O2  |   MW: 86.0892

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Catalog Number AR00DRZA
Chemical Name cis-Crotonic acid
CAS Number 503-64-0
Molecular Formula C4H6O2
Molecular Weight 86.0892
MDL Number MFCD03002777
SMILES C/C=C\C(=O)O

Isocrotonic acid, a versatile compound in chemical synthesis, serves as a key building block for manufacturing various organic compounds. Its application in synthesis can be noted in the following ways:**1. Methylene Maintenance:** Isocrotonic acid plays a vital role in reactions that involve the maintenance of methylene groups. Its structure enables it to act as a precursor in the synthesis of compounds requiring methylene functionality.**2. Cyclization Reactions:** Isocrotonic acid is commonly used in the formation of cyclic compounds through cyclization reactions. Its property of forming stable cyclic structures makes it valuable in the synthesis of diverse chemical products.**3. Functional Group Manipulation:** The presence of functional groups in isocrotonic acid lends itself well to various manipulation strategies in chemical synthesis. It can undergo reactions to introduce or modify functional groups, allowing for the targeted synthesis of desired compounds.**4. Stereochemical Control:** Isocrotonic acid's structure and reactivity offer opportunities for precise stereochemical control in synthesis processes. Its involvement in stereochemically selective reactions can lead to the production of enantiomerically pure compounds.**5. Building Block Formation:** By serving as a fundamental building block in organic synthesis, isocrotonic acid contributes to the construction of complex molecular structures. Its incorporation in multistep synthesis pathways enables the creation of diverse chemical entities.In summary, Isocrotonic acid's utility in chemical synthesis extends to its roles in methylene maintenance, cyclization reactions, functional group manipulation, stereochemical control, and building block formation. Its versatility and reactivity make it a valuable component in the design and creation of novel organic compounds.
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