II Alkanes, Alkenes, and Alkynes

Similar documents
cyclohexane cyclopentane Nomenclature Follows same rules as for stright-chain alkanes. Examples: name the following

Alkanes. Chapter 1.1

CONFORMATIONAL ANALYSIS PRACTICE EXERCISES. 1) Draw a Newman projection of the most stable conformation of 2-methylpropane.

Chapter 10. Conjugation in Alkadienes and Allylic Systems. Class Notes. B. The allyl group is both a common name and an accepted IUPAC name

ORGANIC COMPOUNDS IN THREE DIMENSIONS

Chapter 6. Alkenes: Structure and Stability

Chapter 11. Free Radical Reactions

Unit Vocabulary: o Organic Acid o Alcohol. o Ester o Ether. o Amine o Aldehyde

Stereochemistry of Alkanes and Cycloalkanes

2/10/2011. Stability of Cycloalkanes: Ring Strain. Stability of Cycloalkanes: Ring Strain. 4.3 Stability of Cycloalkanes: Ring Strain

MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.

Chapter 4 Lecture Notes

Chemistry 1110 Organic Chemistry IUPAC Nomenclature

Survival Organic Chemistry Part I: Molecular Models

Conjugation is broken completely by the introduction of saturated (sp3) carbon:

CHM220 Addition lab. Experiment: Reactions of alkanes, alkenes, and cycloalkenes*

Boston University Dresden Science Program ORGANIC CHEMISTRY CAS CH 203 Lecture

EXPERIMENT 1: Survival Organic Chemistry: Molecular Models

Chapter 15 Radical Reactions. Radicals are reactive species with a single unpaired electron, formed by

Final Examination, Organic Chemistry 1 (CHEM 2210) December 2000 Version *A* A. B. C. D.

Molecular Models Experiment #1

H 3 C CH 2 CH 2 CH 2 CH 2 CH 3. Copyright 2012 Nelson Education Ltd. Chapter 1: Organic Compounds 1.1-1

Page Which hydrocarbon is a member of the alkane series? (1) 1. Which is the structural formula of methane? (1) (2) (2) (3) (3) (4) (4)

the double or triple bond. If the multiple bond is CH 3 C CCHCCH 3

Chapter 5 Classification of Organic Compounds by Solubility

Chapter 10 Conjugation in Alkadienes and Allylic Systems

Electrophilic Addition Reactions

Q.1 Draw out some suitable structures which fit the molecular formula C 6 H 6

methyl RX example primary RX example secondary RX example secondary RX example tertiary RX example

CHEM 203 Exam 1. KEY Name Multiple Choice Identify the letter of the choice that best completes the statement or answers the question.

Question Bank Organic Chemistry-I

Identification of Unknown Organic Compounds

Polymers: Introduction

Chapter 13 Organic Chemistry

CHEM 322 Organic Chemistry II - Professor Kathleen V. Kilway

Syllabus for General Organic Chemistry M07A- Fall 2013 Prof. Robert Keil

MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.

17.2 REACTIONS INVOLVING ALLYLIC AND BENZYLIC RADICALS

Molecular Formula Determination

Austin Peay State University Department of Chemistry CHEM 1021 TESTING FOR ORGANIC FUNCTIONAL GROUPS

Addition Reactions of Carbon-Carbon Pi Bonds - Part 1

e. What are the compositions and uses of fractions of crude oil? f. How are further fractions lubricationg oils and waxes obtained?

Studying an Organic Reaction. How do we know if a reaction can occur? And if a reaction can occur what do we know about the reaction?

3.4 The Shapes of Cycloalkanes: Planar or Nonplanar?

Chapter 13 Organic Chemistry

Assessment Schedule 2013 Chemistry: Demonstrate understanding of the properties of organic compounds (91391)

An Introduction to Organic Chemistry

Question (3): What are the different types of covalent bonds found in carbons compounds? Briefly explain with examples.

ALCOHOLS: Properties & Preparation

SUMMARY OF ALKENE REACTIONS

PRACTICE PROBLEMS, CHAPTERS 1-3

Calculating the Degrees of Unsaturation From a Compound s Molecular Formula

Unit 2 Review: Answers: Review for Organic Chemistry Unit Test

Benzene Benzene is best represented as a resonance hybrid:

Saturated NaCl solution rubber tubing (2) Glass adaptor (2) thermometer adaptor heating mantle

Lecture Overview. Hydrogen Bonds. Special Properties of Water Molecules. Universal Solvent. ph Scale Illustrated. special properties of water

But in organic terms: Oxidation: loss of H 2 ; addition of O or O 2 ; addition of X 2 (halogens).

Mass Spec - Fragmentation

Chapter 3 Molecules of Cells

IR Applied to Isomer Analysis

AROMATIC COMPOUNDS A STUDENT SHOULD BE ABLE TO:

BIOLOGICAL MOLECULES OF LIFE

1. What is the hybridization of the indicated atom in the following molecule?

Laboratory 22: Properties of Alcohols

4/18/ Substituent Effects in Electrophilic Substitutions. Substituent Effects in Electrophilic Substitutions

Elements of Addition Polymerization. Branching and Tacticity. The Effect of Crystallinity on Properties

MOLECULAR REPRESENTATIONS AND INFRARED SPECTROSCOPY

Chapter 22 Carbonyl Alpha-Substitution Reactions

F322: Chains, Energy and Resources Alcohols

Copyright 2010 Pearson Education, Inc. Chapter Fourteen 1

Benzene and Aromatic Compounds

These instructions are for a classroom activity which supports OCR A Level Chemistry A.

Molecular Models in Biology

CHEM 208(Organic Chemistry I) Instructor: Dr. Niranjan Goswami. Tel: (618) Web:

Chapter 18: Organic Chemistry

ALKENES AND ALKYNES REACTIONS A STUDENT WHO HAS MASTERED THE MATERIAL IN THIS SECTION SHOULD BE ABLE TO:

83 to 87% carbon 11-15% hydrogen 0.1-7% sulphur % oxygen % nitrogen

Part B 2. Allow a total of 15 credits for this part. The student must answer all questions in this part.

Chapter 8 Alkenes and Alkynes

Electrophilic Aromatic Substitution Reactions

Principles of Drug Action 1, Spring 2005, Aromatics HYDROCARBON STRUCTURE AND CHEMISTRY: AROMATICS. Jack DeRuiter

Conjugation is broken completely by the introduction of saturated (sp 3 ) carbon:

Chemistry Grade 11 Year and weekly plan 2015

Alcohols An alcohol contains a hydroxyl group ( OH) attached to a carbon chain. A phenol contains a hydroxyl group ( OH) attached to a benzene ring.

Worksheets for Organic Chemistry

MULTIPLE CHOICE QUESTIONS Part 4 Nomenklatur -konformation

List the 3 main types of subatomic particles and indicate the mass and electrical charge of each.

Isomers Have same molecular formula, but different structures

Cambridge International Examinations Cambridge International General Certificate of Secondary Education

A REVIEW OF GENERAL CHEMISTRY: ELECTRONS, BONDS AND MOLECULAR PROPERTIES

Amides and Amines: Organic Nitrogen Compounds

Chapter 12 Organic Compounds with Oxygen and Sulfur

IUPAC System of Nomenclature

Electrophilic Aromatic Substitution

The K value enumeration of hydrocarbons alkanes, alkenes and alkynes

ORGANIC CHEM I Practice Questions for Ch. 4

IDENTIFICATION OF ALCOHOLS

Chapter 6 An Overview of Organic Reactions

Determining the Structure of an Organic Compound

Transcription:

II Alkanes, Alkenes, and Alkynes Hydrocarbon: Compound composed of only carbon and hydrogen Saturated Hydrocarbons: Compound with only single bonds Unsaturated Hydrocarbons: Compounds with AT LEAST one double or triple bond 2.1 Alkanes Alkane: Compound composed of only carbon and hydrogen and single bonds Acyclic Alkanes: Compound composed of only carbon and hydrogen in a 'chainlike' conformation Example: Cycloalkane: Example: cyclic compound containing only carbon and hydrogen In a molecule, atoms that are not carbon or hydrogen are called Heteroatoms (such as N, O). Cyclic structure containing heteroatoms are called heterocyclic. Example: 1

2.1.1 Isomers, Nomenclature, and Conformations of Alkanes Basic Alkanes chain like molecules based on C and H with NO branch Branched Alkanes: Alkanes that have carbons that are bonded to more than 2 carbons (these are skeletal isomers) Example Butane: Primary Carbon: Carbon bonded to only ONE other carbon (1 ) Secondary Carbon: Carbon bonded to TWO other carbons (2 ) Tertiary Carbon: Carbon bonded to THREE other carbons (3 ) Quaternary Carbon: Carbon bonded to FOUR other carbons (4 ) Nomenclature: parent: longest alkyl chain of the molecules if two possible chains have the same # of carbons, the one with the more branch points wins suffix: If only alkane, ending is -ane; if molecule has functional groups, they determine the suffix Alkyl Group: Example: Hydrocarbon chain with one open point of attachment often R is used to describe a generic alkyl group 2

Alkyl Groups: Examples of Nomenclature: 3

Conformational Isomers: Isomers that differ as a result of the degree of rotation around a carbon-carbon single bond Let us take Ethane as an example to describe alkane conformation: Conformation or orientations of alkanes can be expressed using several different methods: A) Sawshorse Diagram: A way of representing conformational isomers with stick drawings B) Newman Projection: A way of representing conformational isomers using an end-on projection of a carbon-carbon bond Eclipsed: Conformation around a carbon-carbon single bond in which attached atoms are as close together as possible Staggered: Conformation around a carbon-carbon single bond in which attached atoms are as far apart as possible Torsional or Dihedral Angle: Angle between the bonds in the Newman Projection 4

Example 1,2-Dibromoethane: Q1: Which of these structures is the most stable and why: Example Butane: - Staggered most stable. - Two possibilities, Anti and Gauche 5

2.1.2 Cycloalkanes Cyclic structure based on Carbon-Carbon single bonds Fused Ring Systems: Several cycles (or rings) share two common atoms and the bond between them Spiro Compound: Two Rings share ONE carbon Bridged Ring Compounds: Two rings share two non-connected atoms, thereby building a bridgehead with bridgehead atoms Examples: Nomenclature: 6

Conformation of Cycloalkanes: Boat Confirmation: An unstable conformation of cyclohexane with 109.5 bond angles but in which most bonds are eclipsed Example: Chair Confirmation: The most stable conformation of cyclohexane in which all bonds are staggered and the bond angles are 109.5 Example: The hydrogens are either above and below the ring or to the side of the ring Axial Bond: Bond on cyclohexane chain perpendicular to the ring with three up and three down on alternating carbons Equatorial Bonds: Bonds on cyclohexane chair parallel to the ring Cycloalkanes are not restricted to one confirmation but can FLIP between different conformations. This is called Ring Flip. 7

Substituted Cycloalkanes Bulky substituents prefer to be in equatorial position and NOT axial Example Methylcyclohexane: Geometric Isomers: Cis and trans isomers; a type of stereoisomers in which atoms or groups display orientation differences around a double bond or ring Cis Isomer: Geometric isomer in which groups are on the same side of a ring or double bond Trans Isomer: Geometric Isomer in which groups are on the opposite sides of a ring or double bond Example: 8

2.1.3 Properties of Alkanes Melting and boiling points increase with increased molecular weight (Methane bp. -164 C, decane bp. 174 C) Boiling point decrease with chain branching (decrease in surface area) but metling points increase Non-polar substances not water soluble Alkanes are less dense than water and swim on top of water 2.1.4 Reactions of Alkanes In general very un-reactive you need a lot of driving force A) Oxidation Example Methane: B) Halogenation Halogenation (a substitution reaction): Introduction of a halogen into a molecule (chlorination, bromination) General Reaction: You need heat or light 9

Example Methane: How to control the degree of halogenation? Mechanism: - same as free radical polymerization Where does halogenation takes place? 10

Properties and nomenclature of haloalkanes Toxic and cause cancer Major component of free radicals in ozone layer polar bond (partial charges) Nomenclature same as basic alkane nomenclature Examples: 11

2.2 Alkenes and Alkynes Alkene: Hydrocarbon with at least one carbon-carbon double bond (olefins) Alkynes: Hydrocarbon with at least one carbon-carbon triple bond Nomenclature: Examples: Classification based on substitution patterns: Monosubstituted: Disubstituted: Trisubstituted: Tetrasubstituted: 12

Properties of Alkenes and Alkynes - NO rotation around double and triple bonds - Similar to Alkanes (bp and mp) Isomerism cis and trans: If you have four different substituents around a double bond cis/trans does not work E/Z Nomenclature: Each substituent is assigned a priority The substituent with the highest priority on each carbon is determined If these substituents are on the same side of the molecule, the configuration is Z (zusammen (meaning together)) If these substituents are opposite from each other, the configuration is E (entgegen (meaning opposite)) 13

Examples: How to determine the group priorities? 1) The greater the atomic number the higher the priority 2) If the two substituents on an sp 2 carbon have the same atomic number (there is a tie), the atomic numbers of the atoms that are attached to the "tied" atoms must be considered 3) If an atom is doubly bonded to another atom, the priority system treats it as if it were a singly bonded to two of these atoms 4) In the case of isotopes, the mass number is used to determine the priority Examples: 14

2.2.1 Preparation of Alkenes and Alkynes Elimination Reactions: Dehydrohalogenation: A reaction in which hydrogen and halogen are eliminated from a molecule Examples: Dehydration: A reaction in which the elements of water (H and OH) are eliminated from a molecule Examples: 15

Mechanism: What about the orientation of the double bond? Example: Zaitsev's Rule: (with alkyl groups) will predominate In applicable elimination reactions, the most substituted alkene Stability: CH 2 CH 2 < RCHCH 2 < RCHCHR = R 2 CCH 2 < R 2 CCHR < R 2 CCR 2 (most stable) 16

2.3 Reactions of Alkenes and Alkynes Additions are the most common reactions using alkenes and alkynes Addition to: Alkene Alkyne Four major additions: 1) Addition of hydrogen halides 2) Halogenation: Reaction in which halogen is introduced into a molecule 3) Hydration: Reaction in which the elements of water (H and OH) are introduced into a molecule 4) Hydrogenation: Reaction in which hydrogen is introduced into a molecule 17

Examples: 18

2.3.1 Mechanism Electrophilic Addition: Addition reaction initiated by an electron-deficient species (electrophile) Generic Mechanism: Mechanism of Addition of Hydrogen Halides: 19

Mechanism for the Addition of Halogen Mechanism for the Addition of Water: 20

Orientation of Addition: The more alkyl groups attached to carbocation, the more stable (3 > 2 > 1 ) Markovnikov's Rule: When an unsymmetrical reagent adds to an unsymmetrical alkene, the positive portion of the reagent adds to the carbon that results in the formation of the more stable carbocation Regioselective: In addition reactions, a reaction in which one of two possible positional isomers predominates Regiospecific: In addition reactions, a reaction in which one of two possible positional isomers is formed exclusively Examples: 21

Addition reactions in Polymer Chemistry Polymer: Monomer: A giant molecule composed of a repeating structural unit Compound(s) from which a polymer is made Examples of Addition Polymers: - Polyethylene: - Polypropylene: - Polystyrene: - Polymethylmethacrylate (PMMA): - Orlon: - Teflon: 22

- Polyvinylchloride - Polyvinylidine chloride Mechanism of the Cationic Polymerization: 23

2.4 Oxidation Reactions of Alkenes and Alkynes 1) Hydroxylation with Potassium Permanganate (KMnO 2 ) Example: 2) Ozonolysis Example: 24

2.5 Alkadienes (or Dienes) Alkadienes: Compounds containing two double bond Conjugation: Alternating double and single bonds in a molecule Isolated or Non-Conjugated Double Bond: Two double bonds separated by more than one single bond Additions: Allylic Carbocation: carbon-carbon double bonds Carbocation in which a positive carbon is adjacent to a 25

Orbital considerations of allylic carbocations: Important Dienes: 1) Terpenes 26

2) Rubber 27

Summary of Chapter 2: Alkenes Nomenclature Isomers Conformation Cycloalkanes Reactivity of Alkanes Properties of Alkanes Alkenes and Alkynes Nomenclature Isomers Preparation of Alkenes and Alkynes Additions to Alkenes and Alkynes Electrophilic Additions Hydration Hydrogenation Halogenation Mechanisms and Stereochemistry Polymerization Oxidations of Alkenes and Alkynes Dienes Reactions of Dienes Terpenes and Rubber 28