SlideShare a Scribd company logo
1 of 14
PREPARED BY-Dr.PRIYANKA
Energy profile of the interconversion of
cyclohexane conformations
- Chair conformation: In this conformation, all
bonds are in staggered form, make molecule most
stable puckered conformation.
- Twist boat or skew boat conformation: This
conformation exists in between chair and boat
conformation and more stable than boat but less
stable than chair conformation.
- Half chair conformation: This is highly unstable
and strained conformation of Cyclohexane.
- Boat conformation: This is less stable
conformation than chair form by 6.8 kcal/mole is
due to flagpole interaction of hydrogen atoms.
 Baeyer postulated
that any deviation
of bond angles
from the normal
tetrahedral value
would impose a
condition of
internal strain on
the ring.
The bond angle is of 1090 28'
(or 109.50) for carbon atom in
tetrahedral geometry
(methane molecule).
Baeyer proposed “any
deviation of bond angle from
ideal bond angle value
(109.50) will produce a strain
in molecule. Higher the
deviation lesser the instability.
 These assumptions are helpful
to understand instability of
cycloalkane ring systems.
 - The ring of cyclopropane is
triangle. All the three angles
are of 600 in place of 109.50
(normal bond angle for carbon
atom) to adjust them into
triangle ring system.
 - In same manner, cyclobutane
is square and the bond angles
are of 900 in place of 109.50
(normal bond angle for carbon
atom) to adjust them into
square ring system.
As a result of this, the strain is
more in cyclopropane as
compare to cyclobutane. It will
make cyclopropane less stable
than cyclobutane. So,
cyclopropane easily undergoes
ring opening reaction as compare
to cyclobutane.
- According to Baeyer, the
relative order of stability for
some common cycloalkanes is as
under.
 Limitation of Baeyer’s strain theory
 Successfulness of Baeyer’s angle strain theory
 - Baeyer rightly proposed that cyclopropane and
cyclobutane are flat molecule and having angle of
60˚ and 90˚ those are much deviated from the
ideal tetrahedral value of 109.50 hence these
ring systems are unstable and easily undergo
ring opening reactions. There is much angle
strain in cyclopropane and cyclobutane.
 - Baeyer also proposed that Cyclopentane is not
need to be planar but it is planar as in that
condition the angle is much near to ideal
tetrahedral angle.
Orbital Picture of Angle Strain
- As we known that the bond formation effective
atomic orbital overlap is required.
- For carbon atom, in a molecule if it is sp3
hybridized then the bond angle is 109.50 and
orbital overlap is maximum.
- This is the reason for highly stable compounds.
- For an open chain compound, when carbon is
connected to other two carbon atoms, it is sp3
hybridized and utilize these hybrid orbitals to form
the bonds.
- In cyclopropane, the bond angle is 600 instead of
109.50.
- The carbon Atom don’t use sp3 hybridized orbital
hybridized to form the bond
- Hence, the bond is weaker as compare to usual
carbon-carbon bond
Coulson-Moffitt Model (Bent bond and Banana bond)
- Bent bond One of the first bent bond theories for
cyclopropane was the so-called Coulson-Moffitt
Model
- A bent bond, also known as a banana bond, is a
type of covalent chemical bond with a geometry
somewhat reminiscent of a banana.
- The term itself is a general representation of
electron density or configuration resembling a
similar "bent" structure within small ring molecules,
such as cyclopropane (C3H6) or as a representation
of double or triple bonds within a compound that is
an alternative to the sigma and pi bond model.
Sachse Mohr’s theory (Theory of strainless
rings)
- Baeyer suggested that both large and small
polymethylene rings should be strained, but
Hermann Sachse, soon pointed out that large
rings need not be strained, because the
carbons need not be coplanar.
- Sachse Mohr’s theory proposed that higher
member ring can become free from strain if
all the ring carbons are not forced into one
plane. They exhibit in two non-planar
puckered conformations both of which are
completely free from strain. These are called
the Chair Form and Boat Form
The chair conformation is the
most stable conformation of
cyclohexane.
- In chair cyclohexane there are
two types of positions, axial and
equatorial. The axial positions
point perpendicular to the plane
of the ring, whereas the
equatorial positions are around
the plane of the ring.
Strain means deformation of bond length and bond
angle from their ideal values under the influence of
internal force.
- This gives rise to an instability within a structure
with higher internal energy.
- Strain is term used for the energy associated with
a system due to its geometry.
- When a bond length or bond angle is distorted,
potential energy is stored in the molecule. this
potential energy that is stored in the molecules is
referred to as the strain or the strain energy.
- Type of Strain: (i) Torsional Strain or Eclipsed
Strain (ii) Angle Strain (iii) Steric Strain or Van-der
Walls Strain
Torsional strain or eclipsing strain is the increase
in potential energy of a molecule due to repulsion
between electrons in bonds that do not share an
atom
Steric strain can also be referred to as steric
hindrance, which is related to Van Der Waals
repulsion, or the strain that occurs as the distance
between two atoms or substituents decreases. Steric
strain occurs when multiple substituents are close
together, and cannot be separated by rotation.
Angle Strain: Strain caused when the actual bond
angles in the atoms of the molecule differ from the
ideal bond angles of their geometry.
Unit 5

More Related Content

What's hot

Conformational analysis of ethane butane aliphatics
Conformational analysis of ethane  butane aliphaticsConformational analysis of ethane  butane aliphatics
Conformational analysis of ethane butane aliphaticslsk1976
 
Conformational analysis of cyclohexane
Conformational analysis of cyclohexaneConformational analysis of cyclohexane
Conformational analysis of cyclohexaneMadhusudan Bachute
 
Chapter 04 stereochemistry of alkanes and cycloalkanes
Chapter 04 stereochemistry of alkanes and cycloalkanesChapter 04 stereochemistry of alkanes and cycloalkanes
Chapter 04 stereochemistry of alkanes and cycloalkanesWong Hsiung
 
3 ch241 alkanes (2)
3 ch241 alkanes (2)3 ch241 alkanes (2)
3 ch241 alkanes (2)shinogu
 
Carbocations and carbanions
Carbocations and carbanionsCarbocations and carbanions
Carbocations and carbanionsAshitoshPanchal
 
Carbocations and Their Stability
Carbocations and Their StabilityCarbocations and Their Stability
Carbocations and Their StabilityFARAZ RANA
 
Activating and deactivating group
Activating and deactivating groupActivating and deactivating group
Activating and deactivating groupSchool of Scholars
 
Chapter 13 - Conjugated Unsaturated Systems
Chapter 13 - Conjugated Unsaturated SystemsChapter 13 - Conjugated Unsaturated Systems
Chapter 13 - Conjugated Unsaturated SystemsAmin Fateh MBA, MSc
 
03 - Structure and Stereochemistry of Alkanes - Wade 7th
03 - Structure and Stereochemistry of Alkanes - Wade 7th03 - Structure and Stereochemistry of Alkanes - Wade 7th
03 - Structure and Stereochemistry of Alkanes - Wade 7thNattawut Huayyai
 

What's hot (16)

Bp301 t poc_unit_v (1)
Bp301 t poc_unit_v (1)Bp301 t poc_unit_v (1)
Bp301 t poc_unit_v (1)
 
Conformational analysis of ethane butane aliphatics
Conformational analysis of ethane  butane aliphaticsConformational analysis of ethane  butane aliphatics
Conformational analysis of ethane butane aliphatics
 
cycloalkanes
 cycloalkanes cycloalkanes
cycloalkanes
 
Stereochemistry 12 ug
Stereochemistry 12 ugStereochemistry 12 ug
Stereochemistry 12 ug
 
Conformational analysis of cyclohexane
Conformational analysis of cyclohexaneConformational analysis of cyclohexane
Conformational analysis of cyclohexane
 
Chapter 04 stereochemistry of alkanes and cycloalkanes
Chapter 04 stereochemistry of alkanes and cycloalkanesChapter 04 stereochemistry of alkanes and cycloalkanes
Chapter 04 stereochemistry of alkanes and cycloalkanes
 
streochemistry
streochemistrystreochemistry
streochemistry
 
Decalins
DecalinsDecalins
Decalins
 
3 ch241 alkanes (2)
3 ch241 alkanes (2)3 ch241 alkanes (2)
3 ch241 alkanes (2)
 
Ch03.alkanes
Ch03.alkanesCh03.alkanes
Ch03.alkanes
 
Carbocations and carbanions
Carbocations and carbanionsCarbocations and carbanions
Carbocations and carbanions
 
Carbocations and Their Stability
Carbocations and Their StabilityCarbocations and Their Stability
Carbocations and Their Stability
 
Activating and deactivating group
Activating and deactivating groupActivating and deactivating group
Activating and deactivating group
 
Chapter 13 - Conjugated Unsaturated Systems
Chapter 13 - Conjugated Unsaturated SystemsChapter 13 - Conjugated Unsaturated Systems
Chapter 13 - Conjugated Unsaturated Systems
 
03 - Structure and Stereochemistry of Alkanes - Wade 7th
03 - Structure and Stereochemistry of Alkanes - Wade 7th03 - Structure and Stereochemistry of Alkanes - Wade 7th
03 - Structure and Stereochemistry of Alkanes - Wade 7th
 
Conformations of fused rings
Conformations of fused ringsConformations of fused rings
Conformations of fused rings
 

Similar to Unit 5

Stereochemistry of cyclohexane.pptx
Stereochemistry of cyclohexane.pptxStereochemistry of cyclohexane.pptx
Stereochemistry of cyclohexane.pptxPune University
 
PHYSICAL & CHEMICAL PROPERTIES.pptx
PHYSICAL & CHEMICAL PROPERTIES.pptxPHYSICAL & CHEMICAL PROPERTIES.pptx
PHYSICAL & CHEMICAL PROPERTIES.pptxJane756411
 
Stereochemistry of cyclohexane.pptx
Stereochemistry of cyclohexane.pptxStereochemistry of cyclohexane.pptx
Stereochemistry of cyclohexane.pptxPratibhaSontakke
 
Conformation and configuration sujith
Conformation and configuration   sujithConformation and configuration   sujith
Conformation and configuration sujithSUJITH KP
 
Stereochemistry part 4 Conformations
Stereochemistry part 4 ConformationsStereochemistry part 4 Conformations
Stereochemistry part 4 ConformationsAtulBendale2
 
Stereochemistry of Alkanes and Cycloalkanes
Stereochemistry of Alkanes and CycloalkanesStereochemistry of Alkanes and Cycloalkanes
Stereochemistry of Alkanes and CycloalkanesNilesh Thakare
 
Baeyer's Strain theory.pptx
Baeyer's Strain theory.pptxBaeyer's Strain theory.pptx
Baeyer's Strain theory.pptxitech2017
 
6152gcyygbyhu64235-Geometric-Isomerism.pdf
6152gcyygbyhu64235-Geometric-Isomerism.pdf6152gcyygbyhu64235-Geometric-Isomerism.pdf
6152gcyygbyhu64235-Geometric-Isomerism.pdfparmarkeval1610
 
Stereochemistry (Conformational Isomerism)
Stereochemistry (Conformational Isomerism)Stereochemistry (Conformational Isomerism)
Stereochemistry (Conformational Isomerism)Ashwani Dhingra
 
stereo chemistry-1.pdf
stereo chemistry-1.pdfstereo chemistry-1.pdf
stereo chemistry-1.pdfAyushloshali
 
isotope effect and fragmantation
isotope effect and fragmantationisotope effect and fragmantation
isotope effect and fragmantationDevilRange
 
Molecular Orbital Theory (MOT)
Molecular Orbital Theory (MOT)Molecular Orbital Theory (MOT)
Molecular Orbital Theory (MOT)Tushar Swami
 
chemistrypresentation-mot-160721091024 (1).pdf
chemistrypresentation-mot-160721091024 (1).pdfchemistrypresentation-mot-160721091024 (1).pdf
chemistrypresentation-mot-160721091024 (1).pdfPranabKrBaishya
 
Steriochemistry by vijay
Steriochemistry  by  vijaySteriochemistry  by  vijay
Steriochemistry by vijayVijay Bhosale
 

Similar to Unit 5 (20)

Stereochemistry of cyclohexane.pptx
Stereochemistry of cyclohexane.pptxStereochemistry of cyclohexane.pptx
Stereochemistry of cyclohexane.pptx
 
Conformations of fused rings
Conformations of fused ringsConformations of fused rings
Conformations of fused rings
 
PHYSICAL & CHEMICAL PROPERTIES.pptx
PHYSICAL & CHEMICAL PROPERTIES.pptxPHYSICAL & CHEMICAL PROPERTIES.pptx
PHYSICAL & CHEMICAL PROPERTIES.pptx
 
Stereochemistry of cyclohexane.pptx
Stereochemistry of cyclohexane.pptxStereochemistry of cyclohexane.pptx
Stereochemistry of cyclohexane.pptx
 
Conformation and configuration sujith
Conformation and configuration   sujithConformation and configuration   sujith
Conformation and configuration sujith
 
conformation
 conformation conformation
conformation
 
Stereochemistry part 4 Conformations
Stereochemistry part 4 ConformationsStereochemistry part 4 Conformations
Stereochemistry part 4 Conformations
 
Stereochemistry of Alkanes and Cycloalkanes
Stereochemistry of Alkanes and CycloalkanesStereochemistry of Alkanes and Cycloalkanes
Stereochemistry of Alkanes and Cycloalkanes
 
Stereochemistry
StereochemistryStereochemistry
Stereochemistry
 
Baeyer's Strain theory.pptx
Baeyer's Strain theory.pptxBaeyer's Strain theory.pptx
Baeyer's Strain theory.pptx
 
6152gcyygbyhu64235-Geometric-Isomerism.pdf
6152gcyygbyhu64235-Geometric-Isomerism.pdf6152gcyygbyhu64235-Geometric-Isomerism.pdf
6152gcyygbyhu64235-Geometric-Isomerism.pdf
 
Geometric isomerism
Geometric isomerismGeometric isomerism
Geometric isomerism
 
Stereochemistry (Conformational Isomerism)
Stereochemistry (Conformational Isomerism)Stereochemistry (Conformational Isomerism)
Stereochemistry (Conformational Isomerism)
 
stereo chemistry-1.pdf
stereo chemistry-1.pdfstereo chemistry-1.pdf
stereo chemistry-1.pdf
 
isotope effect and fragmantation
isotope effect and fragmantationisotope effect and fragmantation
isotope effect and fragmantation
 
Molecular Orbital Theory (MOT)
Molecular Orbital Theory (MOT)Molecular Orbital Theory (MOT)
Molecular Orbital Theory (MOT)
 
chemistrypresentation-mot-160721091024 (1).pdf
chemistrypresentation-mot-160721091024 (1).pdfchemistrypresentation-mot-160721091024 (1).pdf
chemistrypresentation-mot-160721091024 (1).pdf
 
Cycloalkanes
CycloalkanesCycloalkanes
Cycloalkanes
 
Steriochemistry by vijay
Steriochemistry  by  vijaySteriochemistry  by  vijay
Steriochemistry by vijay
 
Types of bonds
Types of bondsTypes of bonds
Types of bonds
 

Recently uploaded

Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphThiyagu K
 
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Krashi Coaching
 
Beyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactBeyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactPECB
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...EduSkills OECD
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdfQucHHunhnh
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpinRaunakKeshri1
 
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...Marc Dusseiller Dusjagr
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104misteraugie
 
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdfssuser54595a
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeThiyagu K
 
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991RKavithamani
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityGeoBlogs
 
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxPOINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxSayali Powar
 
Separation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesSeparation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesFatimaKhan178732
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Educationpboyjonauth
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactdawncurless
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdfQucHHunhnh
 

Recently uploaded (20)

Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot Graph
 
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
 
Beyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactBeyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global Impact
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpin
 
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104
 
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and Mode
 
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptxINDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
 
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activity
 
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptxPOINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
POINT- BIOCHEMISTRY SEM 2 ENZYMES UNIT 5.pptx
 
Separation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesSeparation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and Actinides
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Education
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impact
 
TataKelola dan KamSiber Kecerdasan Buatan v022.pdf
TataKelola dan KamSiber Kecerdasan Buatan v022.pdfTataKelola dan KamSiber Kecerdasan Buatan v022.pdf
TataKelola dan KamSiber Kecerdasan Buatan v022.pdf
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 

Unit 5

  • 2. Energy profile of the interconversion of cyclohexane conformations - Chair conformation: In this conformation, all bonds are in staggered form, make molecule most stable puckered conformation. - Twist boat or skew boat conformation: This conformation exists in between chair and boat conformation and more stable than boat but less stable than chair conformation. - Half chair conformation: This is highly unstable and strained conformation of Cyclohexane. - Boat conformation: This is less stable conformation than chair form by 6.8 kcal/mole is due to flagpole interaction of hydrogen atoms.
  • 3.  Baeyer postulated that any deviation of bond angles from the normal tetrahedral value would impose a condition of internal strain on the ring.
  • 4. The bond angle is of 1090 28' (or 109.50) for carbon atom in tetrahedral geometry (methane molecule). Baeyer proposed “any deviation of bond angle from ideal bond angle value (109.50) will produce a strain in molecule. Higher the deviation lesser the instability.
  • 5.  These assumptions are helpful to understand instability of cycloalkane ring systems.  - The ring of cyclopropane is triangle. All the three angles are of 600 in place of 109.50 (normal bond angle for carbon atom) to adjust them into triangle ring system.  - In same manner, cyclobutane is square and the bond angles are of 900 in place of 109.50 (normal bond angle for carbon atom) to adjust them into square ring system.
  • 6. As a result of this, the strain is more in cyclopropane as compare to cyclobutane. It will make cyclopropane less stable than cyclobutane. So, cyclopropane easily undergoes ring opening reaction as compare to cyclobutane. - According to Baeyer, the relative order of stability for some common cycloalkanes is as under.
  • 7.  Limitation of Baeyer’s strain theory  Successfulness of Baeyer’s angle strain theory  - Baeyer rightly proposed that cyclopropane and cyclobutane are flat molecule and having angle of 60˚ and 90˚ those are much deviated from the ideal tetrahedral value of 109.50 hence these ring systems are unstable and easily undergo ring opening reactions. There is much angle strain in cyclopropane and cyclobutane.  - Baeyer also proposed that Cyclopentane is not need to be planar but it is planar as in that condition the angle is much near to ideal tetrahedral angle.
  • 8. Orbital Picture of Angle Strain - As we known that the bond formation effective atomic orbital overlap is required. - For carbon atom, in a molecule if it is sp3 hybridized then the bond angle is 109.50 and orbital overlap is maximum. - This is the reason for highly stable compounds. - For an open chain compound, when carbon is connected to other two carbon atoms, it is sp3 hybridized and utilize these hybrid orbitals to form the bonds. - In cyclopropane, the bond angle is 600 instead of 109.50. - The carbon Atom don’t use sp3 hybridized orbital hybridized to form the bond - Hence, the bond is weaker as compare to usual carbon-carbon bond
  • 9. Coulson-Moffitt Model (Bent bond and Banana bond) - Bent bond One of the first bent bond theories for cyclopropane was the so-called Coulson-Moffitt Model - A bent bond, also known as a banana bond, is a type of covalent chemical bond with a geometry somewhat reminiscent of a banana. - The term itself is a general representation of electron density or configuration resembling a similar "bent" structure within small ring molecules, such as cyclopropane (C3H6) or as a representation of double or triple bonds within a compound that is an alternative to the sigma and pi bond model.
  • 10. Sachse Mohr’s theory (Theory of strainless rings) - Baeyer suggested that both large and small polymethylene rings should be strained, but Hermann Sachse, soon pointed out that large rings need not be strained, because the carbons need not be coplanar. - Sachse Mohr’s theory proposed that higher member ring can become free from strain if all the ring carbons are not forced into one plane. They exhibit in two non-planar puckered conformations both of which are completely free from strain. These are called the Chair Form and Boat Form
  • 11. The chair conformation is the most stable conformation of cyclohexane. - In chair cyclohexane there are two types of positions, axial and equatorial. The axial positions point perpendicular to the plane of the ring, whereas the equatorial positions are around the plane of the ring.
  • 12. Strain means deformation of bond length and bond angle from their ideal values under the influence of internal force. - This gives rise to an instability within a structure with higher internal energy. - Strain is term used for the energy associated with a system due to its geometry. - When a bond length or bond angle is distorted, potential energy is stored in the molecule. this potential energy that is stored in the molecules is referred to as the strain or the strain energy. - Type of Strain: (i) Torsional Strain or Eclipsed Strain (ii) Angle Strain (iii) Steric Strain or Van-der Walls Strain
  • 13. Torsional strain or eclipsing strain is the increase in potential energy of a molecule due to repulsion between electrons in bonds that do not share an atom Steric strain can also be referred to as steric hindrance, which is related to Van Der Waals repulsion, or the strain that occurs as the distance between two atoms or substituents decreases. Steric strain occurs when multiple substituents are close together, and cannot be separated by rotation. Angle Strain: Strain caused when the actual bond angles in the atoms of the molecule differ from the ideal bond angles of their geometry.