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Ch. 19 - Amines
Wade - Organic Chemistry 9th Edition
Wade9th EditionOrganic ChemistryISBN: 9780135213728당신이 사용하는 게 아니라요?교과서 변경
19장, 문제 51b

Using any necessary reagents, show how you can accomplish the following multistep syntheses.
(b)

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1
Step 1: Begin with the pyridine ring as the starting material. Perform a hydrogenation reaction using a catalyst such as palladium on carbon (Pd/C) and hydrogen gas (H₂) to reduce the aromatic ring to a saturated piperidine ring.
Step 2: Introduce a methyl group onto the nitrogen atom of the piperidine ring. This can be achieved using methyl iodide (CH₃I) in the presence of a base like potassium carbonate (K₂CO₃) to perform an alkylation reaction.
Step 3: Functionalize the piperidine ring by introducing an allyl group at the carbon adjacent to the nitrogen atom. Use allyl bromide (CH₂=CH-CH₂Br) and a base such as sodium hydride (NaH) to perform a nucleophilic substitution reaction.
Step 4: Verify the stereochemistry and ensure the allyl group is correctly positioned. If necessary, use purification techniques such as column chromatography to isolate the desired product.
Step 5: Confirm the structure of the final product using spectroscopic methods such as NMR (nuclear magnetic resonance) and IR (infrared spectroscopy) to ensure the synthesis was successful.

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주요 개념

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Cyclic Amines

Cyclic amines are organic compounds that contain a nitrogen atom within a ring structure. They can exhibit unique reactivity due to the strain and electronic properties of the ring. Understanding the structure and properties of cyclic amines is crucial for predicting their behavior in chemical reactions, particularly in transformations such as reductions or substitutions.
추천 영상:
07:12
Reductive Amination

Reduction Reactions

Reduction reactions involve the gain of electrons or the decrease in oxidation state of a molecule. In organic chemistry, this often refers to the conversion of functional groups, such as the reduction of cyclic amines to substituted amines. Familiarity with common reducing agents, such as lithium aluminum hydride or hydrogen gas with a catalyst, is essential for performing these transformations effectively.
추천 영상:
07:12
Reductive Amination

Alkenes and Their Formation

Alkenes are hydrocarbons that contain at least one carbon-carbon double bond. They can be formed through various reactions, including elimination reactions or dehydrogenation of saturated compounds. Understanding the mechanisms of alkene formation is important for predicting the outcomes of multistep syntheses, as they often serve as key intermediates in organic reactions.
추천 영상:
가이드 코스
2:09
Alkene Metathesis Concept 1
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교과서 질문

Pyrrole undergoes electrophilic aromatic substitution more readily than benzene, and mild reagents and conditions are sufficient. These reactions normally occur at the 2-position rather than the 3-position, as shown in the following example.

b. Explain why pyrrole reacts more readily than benzene, and also why substitution occurs primarily at the 2-position rather than the 3-position.

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교과서 질문

Show how you can synthesize the following compounds starting with benzene, toluene, and alcohols containing no more than four carbon atoms as your organic starting materials. Assume that para is the major product (and separable from ortho) in ortho, para mixtures.

(d) N-benzylpropan-1-amine

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교과서 질문

Show how you can synthesize the following compounds starting with benzene, toluene, and alcohols containing no more than four carbon atoms as your organic starting materials. Assume that para is the major product (and separable from ortho) in ortho, para mixtures.

(c) N-ethyl-N-propylbutan-2-amine

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교과서 질문

Show how you can synthesize the following compounds starting with benzene, toluene, and alcohols containing no more than four carbon atoms as your organic starting materials. Assume that para is the major product (and separable from ortho) in ortho, para mixtures.

(g) 4-isobutylaniline

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교과서 질문

Using any necessary reagents, show how you can accomplish the following multistep syntheses.

(c)

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교과서 질문

Pyrrole undergoes electrophilic aromatic substitution more readily than benzene, and mild reagents and conditions are sufficient. These reactions normally occur at the 2-position rather than the 3-position, as shown in the following example.

a. Propose a mechanism for the acetylation of pyrrole just shown. You may begin with pyrrole and the acylium ion, CH3C≡O+. Be careful to draw all the resonance structures of the intermediate.

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