heterocyclic ppt

101

Upload: isabella-enriquez

Post on 11-May-2015

13.706 views

Category:

Technology


5 download

TRANSCRIPT

Page 1: Heterocyclic Ppt
Page 2: Heterocyclic Ppt
Page 3: Heterocyclic Ppt
Page 4: Heterocyclic Ppt
Page 5: Heterocyclic Ppt
Page 6: Heterocyclic Ppt
Page 7: Heterocyclic Ppt
Page 8: Heterocyclic Ppt
Page 9: Heterocyclic Ppt
Page 10: Heterocyclic Ppt
Page 11: Heterocyclic Ppt
Page 12: Heterocyclic Ppt
Page 13: Heterocyclic Ppt
Page 14: Heterocyclic Ppt
Page 15: Heterocyclic Ppt
Page 16: Heterocyclic Ppt
Page 17: Heterocyclic Ppt
Page 18: Heterocyclic Ppt
Page 19: Heterocyclic Ppt
Page 20: Heterocyclic Ppt
Page 21: Heterocyclic Ppt
Page 22: Heterocyclic Ppt
Page 23: Heterocyclic Ppt
Page 24: Heterocyclic Ppt
Page 25: Heterocyclic Ppt
Page 26: Heterocyclic Ppt
Page 27: Heterocyclic Ppt
Page 28: Heterocyclic Ppt
Page 29: Heterocyclic Ppt
Page 30: Heterocyclic Ppt
Page 31: Heterocyclic Ppt
Page 32: Heterocyclic Ppt
Page 33: Heterocyclic Ppt
Page 34: Heterocyclic Ppt
Page 35: Heterocyclic Ppt
Page 36: Heterocyclic Ppt
Page 37: Heterocyclic Ppt
Page 38: Heterocyclic Ppt
Page 39: Heterocyclic Ppt
Page 40: Heterocyclic Ppt
Page 41: Heterocyclic Ppt
Page 42: Heterocyclic Ppt
Page 43: Heterocyclic Ppt
Page 44: Heterocyclic Ppt
Page 45: Heterocyclic Ppt
Page 46: Heterocyclic Ppt
Page 47: Heterocyclic Ppt
Page 48: Heterocyclic Ppt
Page 49: Heterocyclic Ppt
Page 50: Heterocyclic Ppt
Page 51: Heterocyclic Ppt

Electrophilic Substitution Reaction of Pyrrole

• Substitution is preferred at 2-position

• Presence of bulky group at 1-position, directs the electrophile at 3-position

• Presence of electron-releasing group directs the electrophile at 5-position

• Present of electron-withdrawing group at 2-position directs the electrophile at 4 ang 5 positions.

• Reagents:

• Nitration: HNO3/acetic anhydride

• Halogenation (polychclorination): Cl2/SO2Cl2

• Acylation: acetic anhydride

• Alkylation (polyalkylation): CH3I

Page 52: Heterocyclic Ppt

Electrophilic Substitution of Furans

• Substitution at 2 and 5 positions

• If 2 and 5 are occupied substitution occurs at 3 and 4 positions

Reagents:

Nitration: HNO3/acetic anhydride

Sulfonation: SO3/pyridine

Halogenation: dioxane/Br2

Alkylation: RCH=CH2/H3PO4

Acylation: aceticanhydride/H3PO4 or BF3

Page 53: Heterocyclic Ppt

Electrophilic Substitution of Benzothiophene

• Substitution at 2-position is preferred

• Reagents:

• Nitration: aceticanhydride/HNO3

• Sulfonation: H2SO4/30oC

• Halogenation (mixture); Cl2/-30oC

• Bromination: NBS

• Alkylation: CH3CH=CH2/H3PO4

• Acylation: CH3COCl/SnCl4

Page 54: Heterocyclic Ppt
Page 55: Heterocyclic Ppt

Polymerization Reaction under acidic condition

Page 56: Heterocyclic Ppt

Reactions of Pyrrole

Reactions of Pyrrole

1 Nitration-HNO3/H2SO4 – not suitable, extensive decomposition

Reagent: HNO3/acetic anhydride: product, 2 (major), 3(minor)- substituted

2. chlorination: Cl2/SO2Cl2 = polychlorination

3. Acylation: Acetic anhydride (100-150oC)- 2- (major), 2,5 (minor)- substituted

Acyhalide (no friedel craft reagent, promote polymerization

4. Hydroxymethylation: Mannic Reaction

N

CH2=O

(CH3)2NH/dil H+ N

N

CH3I

N

N+ I

KCN

N

CN

N

COOH

mannich base

N

R'

R

O

H+

N

OH

H

+-H2O

N

R'

R

H

+

N

NH

R'R

N

H

H+

N

R'R

N

NH

NH

HN

HN

R'

R

R'R

RR' R

R'

Cyclic- if R, R' = CH3Cyclic if R=H, R'=benzeneLinear if R', R= H

airPorphyrin

Page 57: Heterocyclic Ppt
Page 58: Heterocyclic Ppt
Page 59: Heterocyclic Ppt
Page 60: Heterocyclic Ppt
Page 61: Heterocyclic Ppt
Page 62: Heterocyclic Ppt
Page 63: Heterocyclic Ppt
Page 64: Heterocyclic Ppt
Page 65: Heterocyclic Ppt
Page 66: Heterocyclic Ppt
Page 67: Heterocyclic Ppt
Page 68: Heterocyclic Ppt
Page 69: Heterocyclic Ppt
Page 70: Heterocyclic Ppt
Page 71: Heterocyclic Ppt
Page 72: Heterocyclic Ppt
Page 73: Heterocyclic Ppt
Page 74: Heterocyclic Ppt
Page 75: Heterocyclic Ppt
Page 76: Heterocyclic Ppt
Page 77: Heterocyclic Ppt
Page 78: Heterocyclic Ppt
Page 79: Heterocyclic Ppt
Page 80: Heterocyclic Ppt
Page 81: Heterocyclic Ppt
Page 82: Heterocyclic Ppt
Page 83: Heterocyclic Ppt
Page 84: Heterocyclic Ppt
Page 85: Heterocyclic Ppt
Page 86: Heterocyclic Ppt
Page 87: Heterocyclic Ppt
Page 88: Heterocyclic Ppt

Reactions with Electrophiles

Indole

- Presence of benzene deactivates the pyrrole moiety

- Substitution at 3-position preferred over 2-position(benzoid structure disrupt the aromatic ring

- The presence of electron-withdrawing substituents at the position-1,2 or -3 of the pyrrole ring deactivates the pyrrole ring of indole towards electropilic attack and the substitution occurs in the benzene ring in the positional reactivity: 6>4>5>7. The electron-releasing substituents on the benzene ring exert normal directional influence on the electrophilic substitution (ortho to the substituent)

Page 89: Heterocyclic Ppt

• Electrophilic Substitution of Benzofuran

• Substitution is expected to be at the beta position as in indole, but instead electrophilic substitution occurrs at the alpha position because of the most powerful alpha-directing effect of the oxygen ring atom. The transition state (3H-cation) resulting from the electrophilic attack at the beta position is less stable than that resulting from the attack at the alpha position because the ring oxygen being highly electronegative accomodates positive charge less readily than the ring carbon, thus providing insufficient stabilization to the 3H-cation.

• -the presence of electron-releasing group at the 2-position, directs the electrophile to the 3-position• -the presence of electron-releasing group at the 3-position, directs the electrophile at the 2- posiition• -the presence of electron-withdrawing group deactivates the furan moiety, and substitution occurs at

the 5 and in some cases at the 7-position.• The presence of electron-releasing group in the benzene ring directs the electrophile at the ortho- or

para to the substituent.• -the presence of electron-withdrawing group in the benzene ring directs the electrophile at the 2-

position of the furan moiety.

• Electrophilic Substitution of Benzothophene• -presence of benzene deactivates the reactivity of thiophene moiety• -substitution occurs preferentially at the beta position like indole, but alpha position is also obtained.• -if the thiophene is substituted with electron-withdrawing group or if the benzene is substituted with

electron-releasing group, substitution occurs at the benzene moiety.• -the presence of electron-releasing group at 2-position directs the electrophile at 3-position.• -the presence of electron-releasing group at 3- position directs the electrophile at 2-position• -the presence of elecron-releasing group in the benzene ring directs the electrophile ortho-or –para to

the substituent

Page 90: Heterocyclic Ppt
Page 91: Heterocyclic Ppt
Page 92: Heterocyclic Ppt
Page 93: Heterocyclic Ppt
Page 94: Heterocyclic Ppt
Page 95: Heterocyclic Ppt
Page 96: Heterocyclic Ppt
Page 97: Heterocyclic Ppt
Page 98: Heterocyclic Ppt
Page 99: Heterocyclic Ppt
Page 100: Heterocyclic Ppt
Page 101: Heterocyclic Ppt