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50675-57-5

2,2-DIMETHYLCYCLOPROPANECARBONYL CHLORIDE

Catalog#: AR00DVTH  |   CAS#: 50675-57-5  |   MDL#: MFCD10703531  |   MF: C6H9ClO  |   MW: 132.5881

Packsize Purity Price Availability Quantity
250mg 95% $104.00 2-3 weeks Buy Now Add To Cart
500mg 95% $149.00 2-3 weeks Buy Now Add To Cart
1g 95% $184.00 2-3 weeks Buy Now Add To Cart
2.5g 95% $340.00 2-3 weeks Buy Now Add To Cart
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Catalog Number AR00DVTH
Chemical Name 2,2-DIMETHYLCYCLOPROPANECARBONYL CHLORIDE
CAS Number 50675-57-5
Molecular Formula C6H9ClO
Molecular Weight 132.5881
MDL Number MFCD10703531
SMILES ClC(=O)C1CC1(C)C

2,2-Dimethylcyclopropane-1-carbonyl chloride, also known as DMCPC, is a versatile chemical compound widely used in chemical synthesis processes. Its unique structure and reactivity make it an essential reagent for various transformations in organic chemistry.In organic synthesis, 2,2-Dimethylcyclopropane-1-carbonyl chloride is frequently employed as a key building block for the preparation of complex molecules. Its carbonyl chloride functionality enables it to participate in a range of reactions, including nucleophilic substitution, addition reactions, and cycloadditions.One of the primary applications of DMCPC is in the preparation of β-lactam compounds, which are essential structural motifs found in many biologically active molecules and pharmaceuticals. By utilizing DMCPC as a starting material, chemists can access a diverse array of β-lactam derivatives through strategic functional group manipulations.Furthermore, 2,2-Dimethylcyclopropane-1-carbonyl chloride serves as a valuable precursor for the synthesis of heterocyclic compounds, including pyrrolidines and piperidines. Its cyclopropane ring confers unique steric and electronic properties to the resulting products, making them attractive targets for medicinal chemistry and material science research.Overall, the strategic use of 2,2-Dimethylcyclopropane-1-carbonyl chloride in chemical synthesis allows for the efficient construction of complex molecules with tailored functionalities, highlighting its significance in modern organic chemistry endeavors.
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GHS Pictogram N/A
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