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64341-49-7

1-Bromo-3-buten-2-ol

Catalog#: AR00EDWW  |   CAS#: 64341-49-7  |   MDL#: MFCD00043447  |   MF: C4H7BrO  |   MW: 151.0018

Packsize Purity Price Availability Quantity
50mg 95% $57.00 2-3 weeks Buy Now Add To Cart
100mg 95% $69.00 2-3 weeks Buy Now Add To Cart
250mg 95% $83.00 2-3 weeks Buy Now Add To Cart
500mg 95% $127.00 2-3 weeks Buy Now Add To Cart
1g 95% $160.00 2-3 weeks Buy Now Add To Cart
2.5g 95% $298.00 2-3 weeks Buy Now Add To Cart
5g 95% $474.00 2-3 weeks Buy Now Add To Cart
10g 95% $761.00 2-3 weeks Buy Now Add To Cart
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Catalog Number AR00EDWW
Chemical Name 1-Bromo-3-buten-2-ol
CAS Number 64341-49-7
Molecular Formula C4H7BrO
Molecular Weight 151.0018
MDL Number MFCD00043447
SMILES OC(C=C)CBr

3-Buten-2-ol, 1-bromo- is a versatile chemical compound that plays a crucial role in chemical synthesis. This compound serves as a valuable building block in the creation of various organic molecules and materials. Its unique structure allows it to participate in a range of important chemical reactions, making it a valuable tool for organic chemists.In chemical synthesis, 3-Buten-2-ol, 1-bromo- can be utilized as a precursor in the preparation of complex organic compounds. Its bromine functional group enables it to undergo substitution reactions, where the bromine atom can be replaced by other functional groups to introduce specific chemical functionalities into the final product. This compound can also participate in addition reactions, where it can add to other molecules to form new carbon-carbon or carbon-heteroatom bonds.Furthermore, the presence of the double bond in the molecule provides additional reactivity, allowing for further functionalization and modification of the compound. By strategically incorporating 3-Buten-2-ol, 1-bromo- into synthetic pathways, chemists can access a wide range of structurally diverse compounds with varying properties and applications.Overall, 3-Buten-2-ol, 1-bromo- is a valuable tool in chemical synthesis, offering versatility and reactivity that can be harnessed to create complex organic molecules with precision and control. Its applications extend across various fields of organic chemistry, making it an essential building block for the synthesis of novel materials and compounds.
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