SlideShare une entreprise Scribd logo
1  sur  15
Alkenes Compounds
Unsaturated hydrocarbons
In our discussion of the alkanes we mentioned briefly another family of
hydrocarbons, the alkenes, which contain less hydrogen, carbon for carbon, than the
alkanes, and which can be converted into alkanes by addition of hydrogen.
The alkenes were further described as being obtained from alkanes by loss of
hydrogen in the cracking process. Since alkenes evidently contain less than the
maximum quantity of hydrogen, they are referred to as unsaturated hydrocarbons.
This unsaturation can be satisfied by reagents other than hydrogen and gives rise to
the characteristic chemical properties of alkenes.
Structure of ethylene. The carbon-carbon double bond
The simplest member of the alkene family is ethylene, C2H4 . In view of the ready
conversion of ethylene into ethane, we can reasonably expect certain structural
similarities between the two compounds.
Propylene
The next member of the alkene family is propylene, C3H6 . In view of its great
similarity to ethylene, it seems reasonable to assume that this compound also
contains a carbon-carbon double bond.
Starting with two carbons joined by a double bond, and attaching the other atoms
according to our rule of one bond per hydrogen and four bonds per carbon, we arrive
at the structure
Hybridization and orbital size
The carbon-carbon double bond in alkenes is shorter than the carbon-carbon single
bond in alkanes because four electrons bind more tightly than two. But, in addition,
certain other bonds in alkenes are significantly shorter than their counterparts in
alkanes: for example, the C H distance is 1.103 A in ethylene compared with 1.112 A
in ethane. To account for this and other differences in bond length, we must consider
differences in hybridization of carbon.
The butylenes
Going on to the butylenes, C4H8 , we find that there are a number of possible
arrangements. First of all, we may have a straight-chain skeleton as in n-butane, or
a branched-chain structure as in isobutane.
Next, even when we restrict ourselves to the straight-chain skeleton, we find that
there are two possible arrangements that differ in position of the double bond in the
chain. So far, then, we have a total of three structures; as indicated, these are given
the names 1-butene, 2-butene, and isobutylene.
To understand the kind of isomerism that gives rise to two 2-butenes, we must
examine more closely the structure of alkenes and the nature of the carbon-carbon
double bond. Ethylene is a flat molecule. We have seen that this flatness is a result
of the geometric arrangement of the bonding orbitals, and in particular the overlap
that gives rise to the π orbital.
For the same reasons, a portion of any alkene must also be flat, the two doubly-
bonded carbons and the four atoms attached to them lying in the same plane. If we
examine the structure of 2-butene more closely, and particularly if we use molecular
models, we find that there are two quite different ways, I and II, in which the atoms
can be arranged (aside from the infinite number of possibilities arising from rotation
about the single bonds). In one of the structures the methyl groups lie on the same
side of the molecule (I), and in the other structure they lie on opposite sides of the
molecule (II).
As we soon conclude from our examination of these structures, geometric
isomerism cannot exist if either carbon carries two identical groups. Some possible
combinations are shown below:
Higher alkenes
As we can see, the butylenes contain one carbon and two hydrogens more than
propylene, which in turn contains one carbon and two hydrogens more than ethylene.
The alkenes, therefore, form another homologous series, the increment being the
same as for the alkanes: CH2 . The general formula for this family is C n H 2n .
Names of alkenes
Common names are seldom used except for three simple alkenes: ethylene,
propylene, and isobutylene. The various alkenes of a given carbon number are,
however, sometimes referred to collectively as the pentylenes (amylenes), hexylenes,
heptylenes, and so on. (One sometimes encounters the naming of alkenes as
derivatives of ethylene: as, for example, tetramethylethylene for (CH3)2C=C(CH3)2.
Most alkenes are named by the IUPAC system.
The rules of the IUPAC system are:
1. Select as the parent structure the longest continuous chain that contains the carbon-
carbon double bond; then consider the compound to have been derived from this
structure by replacement of hydrogen by various alkyl groups. The parent structure is
known as ethane < propene, butene, pentene, and so on, depending upon the number
of carbon atoms; each name is derived by changing the ending -ane of the
corresponding alkane name to -ene:
2. Indicate by a number the position of the double bond in the parent chain.
Although the double bond involves two carbon atoms, designate its position by the
number of the first doubly-bonded carbon encountered when numbering from the
end of the chain nearest the double bond; thus 1-butene and 2-butene.
3. Indicate by numbers the positions of the alkyl groups attached to the parent
chain.
H.W / Give the structural formula of: a) 2,3-dimethyl-2-butene; (b) 3-bromo-2-
methylpropene; (c) 2-methyl-3-heptene
Physical properties
Preparation
Alkenes containing up to five carbon atoms can be obtained in pure from the
petroleum industry. Pure samples of more complicated alkenes must be prepared by
methods like those outlined below. The introduction of a carbon-carbon double
bond into a molecule containing only single bonds must necessarily involve the
elimination of atoms or groups from two adjacent carbons:
1. Dehydrohalogenation of alkyl halides:
2. Dehydration of alcohols:
3. Dehalogenation of vicinal dihalides:
4. Reduction of alkynes:
Reactions of the carbon-carbon double bond: addition
Alkene chemistry is the chemistry of the carbon -carbon double bond. What kind
of reaction may we expect of the double bond ? The double bond consists of a
strong or bond and a weak π bond; we might expect, therefore, that reaction would
involve the breaking of this weaker bond. This expectation is correct; the typical
reactions of the double bond are of the sort, where the π bond is broken and two
strong a bonds are formed in its place.
1. Addition of hydrogen. Catalytic hydrogenation.
2. Addition of halogens:
3. Addition of hydrogen halides:
4. Addition of sulfuric acid:
5. Addition of water. Hydration:
6. Halohydrin formation:
7. Dimerization:
8. Alkylation:

Contenu connexe

Tendances (20)

Usha lesson plan pdf file
Usha lesson plan pdf fileUsha lesson plan pdf file
Usha lesson plan pdf file
 
Alkanes
AlkanesAlkanes
Alkanes
 
Hydrocarbon preeti bhatt
Hydrocarbon preeti bhattHydrocarbon preeti bhatt
Hydrocarbon preeti bhatt
 
Chapter 21
Chapter 21Chapter 21
Chapter 21
 
Power Point On Hydrocarbon
Power Point On HydrocarbonPower Point On Hydrocarbon
Power Point On Hydrocarbon
 
Alkanes presentation
Alkanes presentationAlkanes presentation
Alkanes presentation
 
Chapter 20.3 : Saturated and Unsaturated Hydrocarbons
Chapter 20.3 : Saturated and Unsaturated HydrocarbonsChapter 20.3 : Saturated and Unsaturated Hydrocarbons
Chapter 20.3 : Saturated and Unsaturated Hydrocarbons
 
C15 hydrocarbons
C15 hydrocarbonsC15 hydrocarbons
C15 hydrocarbons
 
Chapter 2 Saturated Hydrocarbons
Chapter 2 Saturated HydrocarbonsChapter 2 Saturated Hydrocarbons
Chapter 2 Saturated Hydrocarbons
 
Demo presentation - alkynes
Demo   presentation - alkynesDemo   presentation - alkynes
Demo presentation - alkynes
 
Alkenes&alkynes
Alkenes&alkynesAlkenes&alkynes
Alkenes&alkynes
 
Hydrocarbons
HydrocarbonsHydrocarbons
Hydrocarbons
 
C15 hydrocarbons
C15 hydrocarbonsC15 hydrocarbons
C15 hydrocarbons
 
1 hydrocarbons new
1 hydrocarbons new1 hydrocarbons new
1 hydrocarbons new
 
Alkane alkene and alkynes
Alkane alkene and alkynes Alkane alkene and alkynes
Alkane alkene and alkynes
 
Alkene
AlkeneAlkene
Alkene
 
Alkanes
AlkanesAlkanes
Alkanes
 
Carbon and its compounds
Carbon and its compoundsCarbon and its compounds
Carbon and its compounds
 
Alkanes
AlkanesAlkanes
Alkanes
 
Aliphatic Hydrocarbons
Aliphatic Hydrocarbons Aliphatic Hydrocarbons
Aliphatic Hydrocarbons
 

Similaire à Alkenes compounds

Naming of organic compounds i, 23 (1,2)
Naming of organic compounds i, 23 (1,2)Naming of organic compounds i, 23 (1,2)
Naming of organic compounds i, 23 (1,2)K. Shahzad Baig
 
Ch22 z5e organic
Ch22 z5e organicCh22 z5e organic
Ch22 z5e organicblachman
 
theory organic 1.pdf
theory organic 1.pdftheory organic 1.pdf
theory organic 1.pdfAliKwrdi
 
Carbon and its compound
Carbon and its compoundCarbon and its compound
Carbon and its compoundPiyush Kumar
 
Alkanes and Cycloalkanes chemistry.pptx
Alkanes and Cycloalkanes  chemistry.pptxAlkanes and Cycloalkanes  chemistry.pptx
Alkanes and Cycloalkanes chemistry.pptxLiezelVillaruz
 
Carbon and Its compounds. [ Class- X ]
Carbon and Its compounds. [ Class- X ] Carbon and Its compounds. [ Class- X ]
Carbon and Its compounds. [ Class- X ] Soumita69
 
Application of organic chemistry ok1294986436
Application of organic chemistry   ok1294986436Application of organic chemistry   ok1294986436
Application of organic chemistry ok1294986436Navin Joshi
 
K4 Organic Chemistry Alkanes And Alkenes (Includes Polymers)
K4  Organic  Chemistry    Alkanes And  Alkenes (Includes Polymers)K4  Organic  Chemistry    Alkanes And  Alkenes (Includes Polymers)
K4 Organic Chemistry Alkanes And Alkenes (Includes Polymers)Sean Hunt
 
Unit-Two organic 1.pptx
Unit-Two organic 1.pptxUnit-Two organic 1.pptx
Unit-Two organic 1.pptxdemewezsiber
 
Alkanes compounds
Alkanes compoundsAlkanes compounds
Alkanes compoundsAli Hmood
 

Similaire à Alkenes compounds (20)

Naming of organic compounds i, 23 (1,2)
Naming of organic compounds i, 23 (1,2)Naming of organic compounds i, 23 (1,2)
Naming of organic compounds i, 23 (1,2)
 
Notes
NotesNotes
Notes
 
Carbon and Its Compound
Carbon and Its CompoundCarbon and Its Compound
Carbon and Its Compound
 
Ch22 z5e organic
Ch22 z5e organicCh22 z5e organic
Ch22 z5e organic
 
theory organic 1.pdf
theory organic 1.pdftheory organic 1.pdf
theory organic 1.pdf
 
Carbon and its compound
Carbon and its compoundCarbon and its compound
Carbon and its compound
 
Alkanes and Cycloalkanes chemistry.pptx
Alkanes and Cycloalkanes  chemistry.pptxAlkanes and Cycloalkanes  chemistry.pptx
Alkanes and Cycloalkanes chemistry.pptx
 
Class 10 ch4 carbon compounds
Class 10 ch4 carbon compoundsClass 10 ch4 carbon compounds
Class 10 ch4 carbon compounds
 
Carbon and Its compounds. [ Class- X ]
Carbon and Its compounds. [ Class- X ] Carbon and Its compounds. [ Class- X ]
Carbon and Its compounds. [ Class- X ]
 
Chapter 22
Chapter 22Chapter 22
Chapter 22
 
Organic chemistry
Organic chemistryOrganic chemistry
Organic chemistry
 
Application of organic chemistry ok1294986436
Application of organic chemistry   ok1294986436Application of organic chemistry   ok1294986436
Application of organic chemistry ok1294986436
 
Organic chemistry
Organic chemistryOrganic chemistry
Organic chemistry
 
K4 Organic Chemistry Alkanes And Alkenes (Includes Polymers)
K4  Organic  Chemistry    Alkanes And  Alkenes (Includes Polymers)K4  Organic  Chemistry    Alkanes And  Alkenes (Includes Polymers)
K4 Organic Chemistry Alkanes And Alkenes (Includes Polymers)
 
Unit 4
Unit 4Unit 4
Unit 4
 
Unit 4ale
Unit 4aleUnit 4ale
Unit 4ale
 
Unit-Two organic 1.pptx
Unit-Two organic 1.pptxUnit-Two organic 1.pptx
Unit-Two organic 1.pptx
 
Alkane Alkene Alkyne.pptx
Alkane Alkene Alkyne.pptxAlkane Alkene Alkyne.pptx
Alkane Alkene Alkyne.pptx
 
organic.doc
organic.docorganic.doc
organic.doc
 
Alkanes compounds
Alkanes compoundsAlkanes compounds
Alkanes compounds
 

Plus de Ali Hmood

Stereochemistry
StereochemistryStereochemistry
StereochemistryAli Hmood
 
Alcohols, alkyl halides and ethers
Alcohols, alkyl halides and ethersAlcohols, alkyl halides and ethers
Alcohols, alkyl halides and ethersAli Hmood
 
Alcohols, Alkyl halides and Ethers
Alcohols, Alkyl halides and EthersAlcohols, Alkyl halides and Ethers
Alcohols, Alkyl halides and EthersAli Hmood
 
Naming of substituted alicyclic compounds
Naming of substituted alicyclic compoundsNaming of substituted alicyclic compounds
Naming of substituted alicyclic compoundsAli Hmood
 
Alicyclic compounds
Alicyclic compoundsAlicyclic compounds
Alicyclic compoundsAli Hmood
 
Common names of alkanes
Common names of alkanesCommon names of alkanes
Common names of alkanesAli Hmood
 
Alkane nomenclature
Alkane nomenclatureAlkane nomenclature
Alkane nomenclatureAli Hmood
 
Alkane nomenclature
Alkane nomenclatureAlkane nomenclature
Alkane nomenclatureAli Hmood
 
Alkane nomenclature
Alkane nomenclatureAlkane nomenclature
Alkane nomenclatureAli Hmood
 
Introduction to organic chemistry
Introduction to organic chemistryIntroduction to organic chemistry
Introduction to organic chemistryAli Hmood
 

Plus de Ali Hmood (10)

Stereochemistry
StereochemistryStereochemistry
Stereochemistry
 
Alcohols, alkyl halides and ethers
Alcohols, alkyl halides and ethersAlcohols, alkyl halides and ethers
Alcohols, alkyl halides and ethers
 
Alcohols, Alkyl halides and Ethers
Alcohols, Alkyl halides and EthersAlcohols, Alkyl halides and Ethers
Alcohols, Alkyl halides and Ethers
 
Naming of substituted alicyclic compounds
Naming of substituted alicyclic compoundsNaming of substituted alicyclic compounds
Naming of substituted alicyclic compounds
 
Alicyclic compounds
Alicyclic compoundsAlicyclic compounds
Alicyclic compounds
 
Common names of alkanes
Common names of alkanesCommon names of alkanes
Common names of alkanes
 
Alkane nomenclature
Alkane nomenclatureAlkane nomenclature
Alkane nomenclature
 
Alkane nomenclature
Alkane nomenclatureAlkane nomenclature
Alkane nomenclature
 
Alkane nomenclature
Alkane nomenclatureAlkane nomenclature
Alkane nomenclature
 
Introduction to organic chemistry
Introduction to organic chemistryIntroduction to organic chemistry
Introduction to organic chemistry
 

Dernier

User Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather StationUser Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather StationColumbia Weather Systems
 
FREE NURSING BUNDLE FOR NURSES.PDF by na
FREE NURSING BUNDLE FOR NURSES.PDF by naFREE NURSING BUNDLE FOR NURSES.PDF by na
FREE NURSING BUNDLE FOR NURSES.PDF by naJASISJULIANOELYNV
 
The dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxThe dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxEran Akiva Sinbar
 
Radiation physics in Dental Radiology...
Radiation physics in Dental Radiology...Radiation physics in Dental Radiology...
Radiation physics in Dental Radiology...navyadasi1992
 
Pests of soyabean_Binomics_IdentificationDr.UPR.pdf
Pests of soyabean_Binomics_IdentificationDr.UPR.pdfPests of soyabean_Binomics_IdentificationDr.UPR.pdf
Pests of soyabean_Binomics_IdentificationDr.UPR.pdfPirithiRaju
 
Davis plaque method.pptx recombinant DNA technology
Davis plaque method.pptx recombinant DNA technologyDavis plaque method.pptx recombinant DNA technology
Davis plaque method.pptx recombinant DNA technologycaarthichand2003
 
CHROMATOGRAPHY PALLAVI RAWAT.pptx
CHROMATOGRAPHY  PALLAVI RAWAT.pptxCHROMATOGRAPHY  PALLAVI RAWAT.pptx
CHROMATOGRAPHY PALLAVI RAWAT.pptxpallavirawat456
 
trihybrid cross , test cross chi squares
trihybrid cross , test cross chi squarestrihybrid cross , test cross chi squares
trihybrid cross , test cross chi squaresusmanzain586
 
ALL ABOUT MIXTURES IN GRADE 7 CLASS PPTX
ALL ABOUT MIXTURES IN GRADE 7 CLASS PPTXALL ABOUT MIXTURES IN GRADE 7 CLASS PPTX
ALL ABOUT MIXTURES IN GRADE 7 CLASS PPTXDole Philippines School
 
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxMicrophone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxpriyankatabhane
 
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...Universidade Federal de Sergipe - UFS
 
Call Girls in Majnu Ka Tilla Delhi 🔝9711014705🔝 Genuine
Call Girls in Majnu Ka Tilla Delhi 🔝9711014705🔝 GenuineCall Girls in Majnu Ka Tilla Delhi 🔝9711014705🔝 Genuine
Call Girls in Majnu Ka Tilla Delhi 🔝9711014705🔝 Genuinethapagita
 
GenAI talk for Young at Wageningen University & Research (WUR) March 2024
GenAI talk for Young at Wageningen University & Research (WUR) March 2024GenAI talk for Young at Wageningen University & Research (WUR) March 2024
GenAI talk for Young at Wageningen University & Research (WUR) March 2024Jene van der Heide
 
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...lizamodels9
 
Topic 9- General Principles of International Law.pptx
Topic 9- General Principles of International Law.pptxTopic 9- General Principles of International Law.pptx
Topic 9- General Principles of International Law.pptxJorenAcuavera1
 
Environmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial BiosensorEnvironmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial Biosensorsonawaneprad
 
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingBase editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingNetHelix
 
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.PraveenaKalaiselvan1
 
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPirithiRaju
 

Dernier (20)

User Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather StationUser Guide: Magellan MX™ Weather Station
User Guide: Magellan MX™ Weather Station
 
FREE NURSING BUNDLE FOR NURSES.PDF by na
FREE NURSING BUNDLE FOR NURSES.PDF by naFREE NURSING BUNDLE FOR NURSES.PDF by na
FREE NURSING BUNDLE FOR NURSES.PDF by na
 
The dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxThe dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptx
 
Radiation physics in Dental Radiology...
Radiation physics in Dental Radiology...Radiation physics in Dental Radiology...
Radiation physics in Dental Radiology...
 
Pests of soyabean_Binomics_IdentificationDr.UPR.pdf
Pests of soyabean_Binomics_IdentificationDr.UPR.pdfPests of soyabean_Binomics_IdentificationDr.UPR.pdf
Pests of soyabean_Binomics_IdentificationDr.UPR.pdf
 
Davis plaque method.pptx recombinant DNA technology
Davis plaque method.pptx recombinant DNA technologyDavis plaque method.pptx recombinant DNA technology
Davis plaque method.pptx recombinant DNA technology
 
CHROMATOGRAPHY PALLAVI RAWAT.pptx
CHROMATOGRAPHY  PALLAVI RAWAT.pptxCHROMATOGRAPHY  PALLAVI RAWAT.pptx
CHROMATOGRAPHY PALLAVI RAWAT.pptx
 
trihybrid cross , test cross chi squares
trihybrid cross , test cross chi squarestrihybrid cross , test cross chi squares
trihybrid cross , test cross chi squares
 
ALL ABOUT MIXTURES IN GRADE 7 CLASS PPTX
ALL ABOUT MIXTURES IN GRADE 7 CLASS PPTXALL ABOUT MIXTURES IN GRADE 7 CLASS PPTX
ALL ABOUT MIXTURES IN GRADE 7 CLASS PPTX
 
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptxMicrophone- characteristics,carbon microphone, dynamic microphone.pptx
Microphone- characteristics,carbon microphone, dynamic microphone.pptx
 
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
 
Call Girls in Majnu Ka Tilla Delhi 🔝9711014705🔝 Genuine
Call Girls in Majnu Ka Tilla Delhi 🔝9711014705🔝 GenuineCall Girls in Majnu Ka Tilla Delhi 🔝9711014705🔝 Genuine
Call Girls in Majnu Ka Tilla Delhi 🔝9711014705🔝 Genuine
 
GenAI talk for Young at Wageningen University & Research (WUR) March 2024
GenAI talk for Young at Wageningen University & Research (WUR) March 2024GenAI talk for Young at Wageningen University & Research (WUR) March 2024
GenAI talk for Young at Wageningen University & Research (WUR) March 2024
 
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
 
Volatile Oils Pharmacognosy And Phytochemistry -I
Volatile Oils Pharmacognosy And Phytochemistry -IVolatile Oils Pharmacognosy And Phytochemistry -I
Volatile Oils Pharmacognosy And Phytochemistry -I
 
Topic 9- General Principles of International Law.pptx
Topic 9- General Principles of International Law.pptxTopic 9- General Principles of International Law.pptx
Topic 9- General Principles of International Law.pptx
 
Environmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial BiosensorEnvironmental Biotechnology Topic:- Microbial Biosensor
Environmental Biotechnology Topic:- Microbial Biosensor
 
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingBase editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
 
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
BIOETHICS IN RECOMBINANT DNA TECHNOLOGY.
 
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
 

Alkenes compounds

  • 2. Unsaturated hydrocarbons In our discussion of the alkanes we mentioned briefly another family of hydrocarbons, the alkenes, which contain less hydrogen, carbon for carbon, than the alkanes, and which can be converted into alkanes by addition of hydrogen. The alkenes were further described as being obtained from alkanes by loss of hydrogen in the cracking process. Since alkenes evidently contain less than the maximum quantity of hydrogen, they are referred to as unsaturated hydrocarbons. This unsaturation can be satisfied by reagents other than hydrogen and gives rise to the characteristic chemical properties of alkenes. Structure of ethylene. The carbon-carbon double bond The simplest member of the alkene family is ethylene, C2H4 . In view of the ready conversion of ethylene into ethane, we can reasonably expect certain structural similarities between the two compounds.
  • 3. Propylene The next member of the alkene family is propylene, C3H6 . In view of its great similarity to ethylene, it seems reasonable to assume that this compound also contains a carbon-carbon double bond. Starting with two carbons joined by a double bond, and attaching the other atoms according to our rule of one bond per hydrogen and four bonds per carbon, we arrive at the structure Hybridization and orbital size The carbon-carbon double bond in alkenes is shorter than the carbon-carbon single bond in alkanes because four electrons bind more tightly than two. But, in addition, certain other bonds in alkenes are significantly shorter than their counterparts in alkanes: for example, the C H distance is 1.103 A in ethylene compared with 1.112 A in ethane. To account for this and other differences in bond length, we must consider differences in hybridization of carbon.
  • 4. The butylenes Going on to the butylenes, C4H8 , we find that there are a number of possible arrangements. First of all, we may have a straight-chain skeleton as in n-butane, or a branched-chain structure as in isobutane. Next, even when we restrict ourselves to the straight-chain skeleton, we find that there are two possible arrangements that differ in position of the double bond in the chain. So far, then, we have a total of three structures; as indicated, these are given the names 1-butene, 2-butene, and isobutylene.
  • 5. To understand the kind of isomerism that gives rise to two 2-butenes, we must examine more closely the structure of alkenes and the nature of the carbon-carbon double bond. Ethylene is a flat molecule. We have seen that this flatness is a result of the geometric arrangement of the bonding orbitals, and in particular the overlap that gives rise to the π orbital. For the same reasons, a portion of any alkene must also be flat, the two doubly- bonded carbons and the four atoms attached to them lying in the same plane. If we examine the structure of 2-butene more closely, and particularly if we use molecular models, we find that there are two quite different ways, I and II, in which the atoms can be arranged (aside from the infinite number of possibilities arising from rotation about the single bonds). In one of the structures the methyl groups lie on the same side of the molecule (I), and in the other structure they lie on opposite sides of the molecule (II).
  • 6. As we soon conclude from our examination of these structures, geometric isomerism cannot exist if either carbon carries two identical groups. Some possible combinations are shown below:
  • 7. Higher alkenes As we can see, the butylenes contain one carbon and two hydrogens more than propylene, which in turn contains one carbon and two hydrogens more than ethylene. The alkenes, therefore, form another homologous series, the increment being the same as for the alkanes: CH2 . The general formula for this family is C n H 2n . Names of alkenes Common names are seldom used except for three simple alkenes: ethylene, propylene, and isobutylene. The various alkenes of a given carbon number are, however, sometimes referred to collectively as the pentylenes (amylenes), hexylenes, heptylenes, and so on. (One sometimes encounters the naming of alkenes as derivatives of ethylene: as, for example, tetramethylethylene for (CH3)2C=C(CH3)2. Most alkenes are named by the IUPAC system. The rules of the IUPAC system are: 1. Select as the parent structure the longest continuous chain that contains the carbon- carbon double bond; then consider the compound to have been derived from this structure by replacement of hydrogen by various alkyl groups. The parent structure is known as ethane < propene, butene, pentene, and so on, depending upon the number of carbon atoms; each name is derived by changing the ending -ane of the corresponding alkane name to -ene:
  • 8. 2. Indicate by a number the position of the double bond in the parent chain. Although the double bond involves two carbon atoms, designate its position by the number of the first doubly-bonded carbon encountered when numbering from the end of the chain nearest the double bond; thus 1-butene and 2-butene. 3. Indicate by numbers the positions of the alkyl groups attached to the parent chain. H.W / Give the structural formula of: a) 2,3-dimethyl-2-butene; (b) 3-bromo-2- methylpropene; (c) 2-methyl-3-heptene
  • 10. Preparation Alkenes containing up to five carbon atoms can be obtained in pure from the petroleum industry. Pure samples of more complicated alkenes must be prepared by methods like those outlined below. The introduction of a carbon-carbon double bond into a molecule containing only single bonds must necessarily involve the elimination of atoms or groups from two adjacent carbons: 1. Dehydrohalogenation of alkyl halides:
  • 11. 2. Dehydration of alcohols: 3. Dehalogenation of vicinal dihalides: 4. Reduction of alkynes:
  • 12. Reactions of the carbon-carbon double bond: addition Alkene chemistry is the chemistry of the carbon -carbon double bond. What kind of reaction may we expect of the double bond ? The double bond consists of a strong or bond and a weak π bond; we might expect, therefore, that reaction would involve the breaking of this weaker bond. This expectation is correct; the typical reactions of the double bond are of the sort, where the π bond is broken and two strong a bonds are formed in its place. 1. Addition of hydrogen. Catalytic hydrogenation.
  • 13. 2. Addition of halogens: 3. Addition of hydrogen halides:
  • 14. 4. Addition of sulfuric acid: 5. Addition of water. Hydration: 6. Halohydrin formation: