Alkenes:Formation by elimination reactions (McM 11.12, 11.13) Substitution reactions:Cleavage of ethers (McM 18.5) Organometallic coupling react. (McM.

Slides:



Advertisements
Similar presentations
Electrophilic Aromatic Substitution (Aromatic compounds) Ar-H = aromatic compound 1. Nitration Ar-H + HNO 3, H 2 SO 4  Ar-NO 2 + H 2 O 2.Sulfonation.
Advertisements

16. Chemistry of Benzene: Electrophilic Aromatic Substitution
AROMATIC COMPOUNDS By PUAN AZDUWIN BINTI KHASRI. Criteria for Aromaticity 1. A compound must have an uninterrupted cyclic cloud of electrons above and.
Electrophilic Reaction on Nitrogen R = H: pKa 5,23pKa pKa 6.95.
CHEMISTRY 2600 Topic #7: Benzene and Its Reactions Spring 2008 Dr. Susan Lait.
Case Western Reserve University
Benzene & Aromatic Compounds By: Dr. Shatha alaqeel
BENZENE & its Aromaticity M.ARULSELVAN. Syllabus Benzene and Aromaticity 4.1 Concept of aromaticity: -Huckel's rule for aromaticity, -identification of.
Aromatic Compounds. Nature presents us with a wide array of naturally occurring substances. Some structural subtypes occur with high frequency among the.
Benzene and its Derivatives
Chapter 18 Reactions of Aromatic molecules
Chapter 16 Chemistry of Benzene: Electrophilic Aromatic Substitution
Chapter 14 Aromatic Compounds. Benzene – a remarkable compound Discovered by Faraday 1825 Formula C6H6 Highly unsaturated, but remarkably stable Whole.
Learning Objectives  Understand the resonance description of structure of benzene  Understand the hybridization in benzene 
Chemistry of Aromatic Compounds
Heterocyclic Chemistry
245 Chapter 11: Arenes and Aromaticity 11.1: Benzene - C 6 H : Kekulé and the Structure of Benzene Kekule benzene: two forms are in rapid equilibrium.
Aromatic Compounds PPT 102 ORGANIC CHEMISTRY 1 SEM 1 (2012/2013)
1 Substitution Reactions of Benzene and Its Derivatives: Electrophilic Addition/Elimination Reactions. Benzene is aromatic: a cyclic conjugated compound.
16. Chemistry of Benzene: Electrophilic Aromatic Substitution Based on McMurry’s Organic Chemistry, 6 th edition, Chapter 16 ©2003 Ronald Kluger Department.
16. Chemistry of Benzene: Electrophilic Aromatic Substitution
16. Chemistry of Benzene: Electrophilic Aromatic Substitution Based on McMurry’s Organic Chemistry, 6 th edition, Chapter 16.
220 Chapter 10: Conjugation in Alkadienes and Allylic Systems Conjugation: a series of overlapping p-orbitals 10.1: The Allyl Group - allylic position.
Heterocycles (McM chapt 28) Monocyclic or fused rings Cont. one ore more ring atom ≠ C (normally O; N; S) Aromatic, partly saturated or saturated ring(s)
© 2011 Pearson Education, Inc. 1 Chapter 15 Aromaticity Reactions of Benzene Organic Chemistry 6 th Edition Paula Yurkanis Bruice.
1 Aromatic Compounds Aromatic was used to described some fragrant compounds in early 19 th century but are now grouped by chemical behavior (unsaturated.
Chapter 12 - Reactions of Benzene - EAS 12.1Introduction to benzene vs. alkenes 12.2Mechanistic principles of Electrophilic Aromatic Subsitution 12.3Nitration.
Chapter 8 Aromaticity Reactions of Benzene. Aromatic compounds undergo distinctive reactions which set them apart from other functional groups. They.
Chapter 15 Reactions of Aromatic Compounds. Chapter 152  Electrophilic Aromatic Substitution  Arene (Ar-H) is the generic term for an aromatic hydrocarbon.
Electrophilic Aromatic Substitution (EAS)Reactions Overall reaction.
Aromatic Compounds.
Chapter 15 Reactions of Aromatic Compounds
Chapter 5-2. Chemistry of Benzene: Electrophilic Aromatic Substitution
Substituent Effects - Induction
Substituents on Slide 25. The Phenyl Group When a benzene ring is a substituent, the term phenyl is used (for C 6 H 5  ) –You may also see “Ph” or “
Organic Chemistry Aromatic compounds.
Aromatic Compounds Chapter Chem 1. The expressing aromatic compounds came to mean benzene and derivatives of benzene. Structure of Benzene: Resonance.
16. Chemistry of Benzene: Electrophilic Aromatic Substitution Based on McMurry’s Organic Chemistry, 7 th edition.
Amines (McM chapt 24) pKa Alkylamines: ca 9-11 Arylamines: ca 4-5 (anilines)
Benzene & Aromatic Compounds
Aromaticity: Reactions of Benzene and Substituted Benzenes
Organic 2 Dr. Thoraya A.Farghaly.

Aromatic compounds
Reactions of Arenes 1.
16. Chemistry of Benzene: Electrophilic Aromatic Substitution
Chemistry Department, College of Science, King Saud University
When a benzene ring is a substituent, it is called a
Aromatic compounds 1.
Reactions of Aromatic Compounds
Aromatic compounds
Chemistry of Aromatic Compounds
Aromatic compounds
(Aromatic hydrocarbons)
Heterocyclic Chemistry
Benzene & Aromatic Compounds
Electrophilic Aromatic Substitution (Aromatic compounds)
Reactions of Benzene The most characteristic reaction of aromatic compounds is substitution at a ring carbon.
Aromatic Compounds.
Fundamentals of Organic Chemistry
Electrophilic Aromatic Substitution
4/30/2019 CHEM 240 PRINCIPLES OF ORGANIC CHEMISTRY I FOR CHEMISTRY’ STUDENTS, COLLEGE OF SCIENCE PRE-REQUISITES COURSE; CHEM 101 CREDIT HOURS; 2 (2+0)
Aromatic Compounds.
Fundamentals of Organic Chemistry
Heterocyclic Chemistry
Reaction Mechanism in Aromatic hydrocarbons Batch: 2nd Semester Prof
Isolated and Conjugated Dienes
OBJECTIVES Describe the reactions between strong electrophiles and aromatic compounds (the nucleophilc component) which lead to substitution of a hydrogen.
22-1 Chapter 22 Reaction of Benzene and its Derivatives.
Presentation transcript:

Alkenes:Formation by elimination reactions (McM 11.12, 11.13) Substitution reactions:Cleavage of ethers (McM 18.5) Organometallic coupling react. (McM 10.9, lab ex 10) Dienes: MO description, conjugated diene (McM 14.2) Aromatic compounds: Aromaticity (repetition; McM ) Electrophilic aromatic subst and substituent effects (McM , 16.12) Nucleophilic aromatic subst (McM ) Other react on aromatic compounds (McM )

Dienes (McM 14.2)

Molecular orbitals of H 2 (cf fig 1.20) -  -bondMolecular orbitals of  -bond (cf fig. 1.21) MO 1,3-butadiene cf fig  electron in 2 bonding orbitals (ground state) HOMO LUMO h 1 e - Energy absorb UV spectra

MO orbitals benzene - aromaticity (McM ) Benzene 1,3,5-hexatriene only bonding MO shown

Criteria for Aromaticity (Hückel) (Monocyclic) ring Planar No of  -electrons in conjugation 4n+2 (n: 0, 1, 2,....) Benzene: The 3 bonding MOs are filled Filled shell of MOs (cf. filled shell of atomic orbitals nobel gasses) Less than 6  -electrons: Half-filled orbital(s) - radical character More than 6: Electron in antibonding orbitals Unstable, high-enegy species

Ex. of an anti-aromatic compound - Cyclobutadiene

Electrophilic Aromatic Substitution and Substituent Effects (McM ) Halogenation (bromination) Nitration Sulfonation Alkylation (Friedel Craft) Acylation (Friedel Craft) R influence: Reactivity Regiochemistry

R: Electron donating By resonance ex. RO-, HO-, O-, R 2 N-, RHN, H 2 N-. RCOHN- The ring is activated for E-fil ar subst More reactive than benzene

Reaction in o or p pos. Activating, o/p directing

R: Electron donating By inductive effect ex. alkyls The ring is activated for E-fil ar subst More reactive than benzene Activating, o/p directing

R: Electron withdrawing By resonance effect: -CN, -COR, COH, CO 2 H, CO 2 R, -NO 2, -SO 2 R etc The ring is deactivated for E-fil ar subst Less reactive than benzene Especially electron poor in o/p pos

Deactivating, m directing

R: Electron withdrawing By inductive effect: Alternative A: -NR 3 Deactivating, m directing Alternative B: -Halogens Deactivating, but o/p directing!! Inductively strong withdrawing effect Electron donor by resonance (lone pairs) weak effect

Regiochemistry in E-fil aromatic subst of disubst. benzene derivs. (McM 16.7) Synth of trisubst. benzene deriv. - Planning of a good reaction sequence (McM 16.12)

Nucleophilic Aromatic Substitution (McM )

Mechanisms: S N Ar S N 1: Via diazonium salts (McM 24.8) Benzyne (SRN1: Involves radicals) (VNS: Vicarious nucl. Subst.)

S N Ar Only on electron defficient arenes (EWG o/p to X, Anion stabilizing effect) (Aromatic heterocycles, McM 28.6) 1st step rate limiting (Aromaticity broken) X=F>Cl>Br>I

Benzyne “Triple bond” between sp 2 C p-p overlap sp 2 -sp 2 overlap - weak bond Benzynes unstable / reactive intermed. Reactivity of benzynes: Adds nucleophiles Dienophile in Diels Alder react.

Reactivity of aromatic side chains Ox. of alkyl side chains Halogenation benzylic position (c.f. Lab ex. 1) No ox. cleavage of “double bonds” in benzene Reduction of benzene (hydrogenation) difficult