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OCR A Level Chemistry A

2.2.2
Bonding and Structure

OCR 2.2.2 covers the covalent bond and dot-and-cross diagrams, dative bonding, average bond enthalpy, the shapes and bond angles of molecules and ions predicted by electron pair repulsion, electronegativity and the polarity of bonds and molecules. The section also covers ionic and metallic bonding, simple molecular and giant lattices, and intermolecular forces with hydrogen bonding and the anomalous properties of water.

Exam Paper
Paper 1 and 2
H432/01 and H432/02
Specification Points
2.2.2 (a) – (o)
ionic, covalent, shapes, metallic, lattices, intermolecular forces
Topic Parts
9 parts
35 revision pages
Exam Board
OCR
OCR H432

Revision Notes

Work through each part of OCR 2.2.2 in a structured sequence.

Covalent
Covalent
Bonding
1

Covalent Bonding

The covalent bond, sigma and pi bonds, dative bonds, giant covalent structures and electronegativity (2.2.2(d)-(f), (i)).

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VSEPR
Shapes of
Molecules
2

Shapes of Molecules

Electron pair repulsion, the shapes and bond angles of molecules and ions with up to six electron pairs (2.2.2(g)-(h)).

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Polarity
Polar
Molecules
3

Non-Polar and Polar Molecules

Polar bonds, permanent dipoles and whether a molecule is polar overall (2.2.2(j)).

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Ionic
Ionic
Bonding
4

Ionic Bonding

Ionic bonding and dot-and-cross diagrams, giant ionic lattices, polarisation and the properties of ionic compounds (2.2.2(a)-(c)).

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Metallic
Metallic
Bonding
5

Metallic Bonding

Metal ions in a sea of delocalised electrons, and how the model explains conductivity, malleability and melting points.

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Molecular
Simple
Molecular
6

Simple Molecular Structures

Iodine and ice as simple molecular lattices: covalent bonds inside the molecules, weak forces between them (2.2.2(n)-(o)).

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Lattices
Structure
Types
7

Structure Types

Giant ionic, giant metallic, giant covalent and simple molecular lattices compared, and deducing structure and bonding from properties.

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Bond strength
Bond
Enthalpy
8

Bond Enthalpy and Pauling Values

Average bond enthalpy as a measure of bond strength, and reading the Pauling electronegativity scale (2.2.2(f), (i)).

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Forces
Intermolecular
Forces
Available
9

Intermolecular Forces

Induced and permanent dipole-dipole interactions, hydrogen bonding, the anomalous properties of water, boiling point trends and solubility (2.2.2(k) to (o)).

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Specification Coverage

2.2.2 Bonding and Structure – OCR A Level Chemistry A

The following OCR learning outcomes for covalent bonding, shapes and polarity are covered by these pages. The ionic bonding, metallic bonding and lattice pages are now included; the intermolecular forces outcomes (k) to (m) follow with a later topic.

2.2.2 Bonding and structure (covalent bonding, shapes and polarity)

2.2.2(d)
Covalent bond
Covalent bond as the strong electrostatic attraction between a shared pair of electrons and the nuclei of the bonded atoms.
2.2.2(e)
Dot-and-cross diagrams
Construction of dot-and-cross diagrams of molecules and ions to describe:
(i)
single covalent bonding
(ii)
multiple covalent bonding
(iii)
dative covalent (coordinate) bonding
2.2.2(f)
Bond enthalpy
Use of the term average bond enthalpy as a measurement of covalent bond strength.
2.2.2(g)
Shapes and bond angles
The shapes of, and bond angles in, molecules and ions with up to six electron pairs (including lone pairs) surrounding the central atom as predicted by electron pair repulsion, including the relative repulsive strengths of bonded pairs and lone pairs of electrons.
2.2.2(h)
Electron pair repulsion
Electron pair repulsion to explain the following shapes of molecules and ions:
linear, non-linear, trigonal planar, pyramidal, tetrahedral and octahedral
2.2.2(i)
Electronegativity
Electronegativity as the ability of an atom to attract the bonding electrons in a covalent bond; interpretation of Pauling electronegativity values.
2.2.2(j)
Polarity
Explanation of:
(i)
a polar bond and permanent dipole within molecules containing covalently-bonded atoms with different electronegativities
(ii)
a polar molecule and overall dipole in terms of permanent dipole(s) and molecular shape