A2.8 Aromatics Flashcards

1
Q

Benzene bonding

A

Six carbon atoms in a ring

Each carbon has 3 valence electrons in sigma bonds

6 delocalised electrons in delocalised pisystem above and below the plane of the ring

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2
Q

Kekules model

A

Cyclohexa-1,3,5-triene

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3
Q

Kekules limitations

A

1) benzene carbon atoms in ring are equivalent bond distance
- average of c-c and c=c bond distances

2) benzene is resistant to addition reactions

3) benzenes hydrogenation was lower than expected
- difference must be due to bonds broken so bonds broken value must be higher in benzene because they are stronger - delocalised pi system is more stable

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4
Q

Benzene on a chain

A

X- phenylalkane

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5
Q

Benzene and aldehyde

A

Benzaldehyde

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6
Q

Benzene and carboxylic acid

A

Benzoic acid

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7
Q

Benzene and amine

A

Phenylamine

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8
Q

Benzene reactions

A

Does not readily react like alkenes

Density of electrons around any two carbons in delocalised pi system is lower than between two carbons in alkene localised pi bond

Therefore requires halogen carrier

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9
Q

Why does benzene only undergo electrophillic substitution

A

Intermediate is not stable and breaks down to restore aromaticity

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10
Q

Phenol solubility

A

Struggles to form hydrogen bonds with water due to large non polar aromatic ring so less soluble than most alcohols

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11
Q

Phenol as an acid

A

Weak acid

Able to react with strong bases

Unable to react with carbonates

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12
Q

Phenol reactivity compared to benzene

A

Far more reactive

Lone pair from oxygen atom is donated to the delocalised pi system

Raises electron density

Causing it to attract electrophiles

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13
Q

Phenol halogenation

A

Doesn’t require halogen carrier

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14
Q

Phenol nitration

A

Doesn’t require catalyst

Doesn’t need to be concentrated HNO3

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15
Q

Electron donating

A

OH and NH2

Direct to 2 and 4

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16
Q

Electron withdrawing

A

NO2
COOH
Directs to position 3