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54845-28-2

E2HE2H

Catalog#: AR00DTDK  |   CAS#: 54845-28-2  |   MDL#:  |   MF: C12H20O2  |   MW: 196.2860

Packsize Purity Price Availability Quantity
1g 95% $35.00 Global Stock Buy Now Add To Cart
5g 95% $130.00 Global Stock Buy Now Add To Cart
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Catalog Number AR00DTDK
Chemical Name E2HE2H
CAS Number 54845-28-2
Molecular Formula C12H20O2
Molecular Weight 196.2860
SMILES CCC/C=C/COC(=O)/C=C/CCC

(E)-2-Hexenyl (E)-2-hexenoate, also known as trans-2-Hexenyl trans-2-hexenoate, is a chemical compound commonly utilized in chemical synthesis processes. This compound is a combination of a trans-2-hexenyl group (a six-carbon chain with a double bond at the 2nd carbon) and a trans-2-hexenoate group (an ester group containing a double bond at the 2nd carbon).In chemical synthesis, (E)-2-Hexenyl (E)-2-hexenoate serves as a versatile building block due to the presence of the double bonds in both the alkyl and ester moieties. These double bonds provide reactivity that can be exploited for various transformations and reactions in organic chemistry. The compound can undergo processes like hydrogenation, hydrolysis, and addition reactions, leading to the formation of different derivatives with altered properties.One important application of (E)-2-Hexenyl (E)-2-hexenoate in chemical synthesis is its use as a key intermediate in the production of fragrance compounds. By modifying the ester or alkyl groups attached to the double bonds, chemists can create a wide range of esters with unique odors, making this compound valuable in the fragrance industry. Additionally, the reactivity of the double bonds allows for the introduction of functional groups that can further tailor the chemical and physical properties of the resulting molecules.Overall, (E)-2-Hexenyl (E)-2-hexenoate plays a crucial role in chemical synthesis by offering a platform for the construction of diverse organic compounds through controlled reactions and transformations. Its versatility and reactivity make it a valuable tool for organic chemists seeking to design and produce new molecules for various applications.
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