hl bonding hybridisation. hybridization is a model which is used to explain the behavior of atomic...

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HL Bonding Hybridisation

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Page 1: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

HL Bonding

Hybridisation

Page 2: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

• Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds.

• When an atom forms a covalent bond with another atom, the orbitals of the atom become rearranged.

• This rearrangement results in the "mixing" of orbitals.

From: http://www.bookrags.com/Orbital_hybridisation

Page 3: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Hybridisation

• When atoms join together to form molecules, their atomic orbitals interact with each other to form hybrid orbitals

Page 4: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Hybridisation

• When atoms join together to form molecules, their atomic orbitals interact with each other to form hybrid orbitals

• This process is called hybridisation

Page 5: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Hybridisation

• When atoms join together to form molecules, their atomic orbitals interact with each other to form hybrid orbitals

• This process is called hybridisation• The orbitals formed in this process are of the

same energy

Page 6: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Hybridisation

• When atoms join together to form molecules, their atomic orbitals interact with each other to form hybrid orbitals

• This process is called hybridisation• The orbitals formed in this process are of the

same energy• The orbitals are symmetrically arranged

Page 7: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Hybridisation

• When atoms join together to form molecules, their atomic orbitals interact with each other to form hybrid orbitals

• This process is called hybridisation• The orbitals formed in this process are of the

same energy• The orbitals are symmetrically arranged• 3 types - sp3, sp2 and sp

Page 8: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Hybridisation

• When atoms join together to form molecules, their atomic orbitals interact with each other to form hybrid orbitals

• This process is called hybridisation• The orbitals formed in this process are of the

same energy• The orbitals are symmetrically arranged• 3 types - sp3, sp2 and sp• Hybridisation doesn’t just occur in carbon

Page 9: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation

• E.g. methane, ammonia, water

Page 10: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation

• E.g. methane, ammonia, water

• Methane contains 4 equal C - H bonds, therefore the outer shell electrons (2s2 2p2) have merged to form 4 hybrid sp3 orbitals of equal energy

Page 11: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation

• E.g. methane, ammonia, water

• Methane contains 4 equal C - H bonds, therefore the outer shell electrons (2s2 2p2) have merged to form 4 hybrid sp3 orbitals of equal energy

• One electron is in each of the hybrid orbitals and can form a sigma bond with a hydrogen atom

Page 12: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation in methane

From http://ibchem.com/IB/ibnotes/full/bon_htm/14.2.htm

Page 13: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation

• The four hybrid orbitals arrange themselves to be as far apart as possible because of the repulsion between the electrons

• This produces the tetrahedral shape of methane and a bond angle of 109.5º

Page 14: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation in methane

From http://www.mhhe.com/physsci/chemistry/carey5e/Ch02/ch4hybrid2.gif

Page 15: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation in water

• A similar thing occurs in water - 4 sp3 hybridised orbitals are formed around the oxygen and spread out in a tetrahedral shape

Page 16: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation in water• A similar thing occurs in water - 4 sp3

hybridised orbitals are formed around the oxygen and spread out in a tetrahedral shape

• Two of these orbitals contain lone/non-bonded pairs of electrons, and the other two form sigma bonds with the hydrogen atoms

Page 17: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp3 hybridisation in water• A similar thing occurs in water - 4 sp3

hybridised orbitals are formed around the oxygen and spread out in a tetrahedral shape

• Two of these orbitals contain lone/non-bonded pairs of electrons, and the other two form sigma bonds with the hydrogen atoms

• As the non-bonded pairs are closer to the centre of the molecule, they force the two O-H bonds slightly closer together forming a bond angle of 105 º

Page 18: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

From: http://www.rjc.edu.sg/subjects/chemistry/resources/simulations-hybridisation/lecture28.html

sp3 hybridisation in water

Page 19: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

From: http://www.rjc.edu.sg/subjects/chemistry/resources/simulations-hybridisation/lecture28.html

sp3 hybridisation in water

Page 20: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp2 hybridisation

• E.g. ethene - C2H4, BF3

Page 21: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp2 hybridisation

• E.g. ethene - C2H4, BF3

• In ethene, one 2p orbital from each carbon atom forms a pi bond - this is not involved in hybridisation

Page 22: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp2 hybridisation

• E.g. ethene - C2H4, BF3

• In ethene, one 2p orbital from each carbon atom forms a pi bond - this is not involved in hybridisation

• The remaining 2s orbital and two 2p orbitals hybridise to form three sp2 orbitals, which form sigma bonds - two with hydrogen atoms and one between the C atoms

Page 23: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp2 hybridisation in ethene

From: http://www.rsu.ac.th/science/chem/yupa/Arjarnyupa/1historyorganic/sp2.htm

Page 24: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Hybridisation in BF3

From: http://www.rjc.edu.sg/subjects/chemistry/resources/simulations-hybridisation/lecture28.html

Page 25: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp hybridisation

• E.g. ethyne (C2H2), BeF2

Page 26: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp hybridisation• E.g. ethyne (C2H2), BeF2

• The 2s orbital hybridises with just one of the 2 p orbitals

Page 27: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp hybridisation• E.g. ethyne (C2H2), BeF2

• The 2s orbital hybridises with just one of the 2 p orbitals

• In BeF2 this is because there are only 2 electrons in the 2nd shell (1s2 2s2)

Page 28: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp hybridisation• E.g. ethyne (C2H2), BeF2

• The 2s orbital hybridises with just one of the 2 p orbitals

• In BeF2 this is because there are only 2 electrons in the 2nd shell (1s2 2s2)

• In ethyne this is because two pi bonds are formed between the carbons leaving only 2 electrons on each carbon to form sigma bonds - one with a H atom and one with the other C atom

Page 29: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp hybridisation in ethyne

From: http://www.citycollegiate.com/hybridization2.htm

Page 30: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

sp hybridisation in BeF2

From: http://www.rjc.edu.sg/subjects/chemistry/resources/simulations-hybridisation/lecture28.html

Page 31: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Question

• Identify the type of hybridisation in each of the carbon atoms in propene

From: http://www.neiu.edu/~ncaftori/eng/propene.GIF

Page 32: HL Bonding Hybridisation. Hybridization is a model which is used to explain the behavior of atomic orbitals during the formation of covalent bonds. When

Answer• Identify the type of hybridisation in each of the carbon atoms in propene

From: http://www.neiu.edu/~ncaftori/eng/propene.GIF

sp3

sp2

sp2