Draw the product to each of the following reactions. Q. 5: Using the reactions in the Reaction Bank below, devise a synthetic route (by selecting the right reactions and putting them in the right order) to convert the starting material into the product. You do not have to use all
Reactions of Ethers
Ethers (R-O-R’) are compounds formed by replacing hydrogen atoms of an alcohol (R-OH compound) or a phenol (C6H5OH) by an aryl/ acyl group (functional group after removing single hydrogen from an aromatic ring). In this section, reaction, preparation and behavior of ethers are discussed in the context of organic chemistry.
Epoxides
Epoxides are a special class of cyclic ethers which are an important functional group in organic chemistry and generate reactive centers due to their unusual high reactivity. Due to their high reactivity, epoxides are considered to be toxic and mutagenic.
Williamson Ether Synthesis
An organic reaction in which an organohalide and a deprotonated alcohol forms ether is known as Williamson ether synthesis. Alexander Williamson developed the Williamson ether synthesis in 1850. The formation of ether in this synthesis is an SN2 reaction.
Draw the product to each of the following reactions.
Q. 5: Using the reactions in the Reaction Bank below, devise a synthetic route (by selecting the right reactions and putting them in the right order) to convert the starting material into the product. You do not have to use all the reactions in the Reaction bank.
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NaOCH2CH3
r.
NaOCH3"
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right reactions and putting them in the right order) to convert the starting material into the product.
You do not have to use all the reactions in the Reaction bank.
а.
Reaction Bank:
A: NaOCH2CH3
B: CH3CH2B
C: H30*, heat
но
H3CH2CO
OCH2CH3
D: LDA
E: H2C204"
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