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 2b.
CHEMICAL BONDING: What is an ionic formula?
How do you work out an ionic formula? and how do you name ionic compounds?
[Author
©
Dr Phil Brown GRIC, PhD:
Doc Brown's chemistry exam revision notes on
deducing, naming and writing
out an ionic formula,
suitable for students of UK GCSE Science level
AQA, Edexcel, OCR, WJEC
Eduqas
and CCEA GCSE chemistry
courses, ~US grades 9-10 chemistry, also useful for more advanced
pre-university A level chemistry courses
[ionic bonding page updated
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m/c QUIZ on structure, properties & chemical bonding
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Sub-index for this
page
(1)
Explaining what an ionic formula is
(2)
How to work out an ionic formula
(question and answer styled section)
(3)
How to working out an ionic formula from periodic table patterns
(4)
How to name compounds, especially those which are ionic
(5)
Links to tests for cations and anions to help identify ions in
ionic compounds
All my
GCSE level chemistry revision
notes
All my advanced level chemistry revision notes
All my
structure and bonding notes
Part 2
Ionic Bonding: compounds and properties
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(1) A note on explaining what an ionic formula is
For covalent compounds you have a definite formula of a
molecule e.g. H2O meaning two atoms of hydrogen combined with one
atom of oxygen to form a single particle of three atoms.
However, ionic compounds form a giant ionic lattice of layer
after layer of oppositely charged ions e.g.
(a) For sodium chloride NaCl you have a three dimensional array
of positive sodium ions Na+
and negative chloride ions Cl-.
There are no NaCl molecules.
Therefore an ionic compound
formula gives you the ratio of the component ions.
For example: sodium chloride, formula NaCl means a ratio of
one Na+ ion to one Cl- ion and so you would write the
ionic formula
of sodium chloride as Na+Cl–.
(b) Magnesium
bromide, formula MgBr2 means a ratio of
one Mg2+ ions to two Br– ions
So, you would write the
ionic formula of magnesium bromide as
Mg2+(Br–)2
Note the need for ()
to avoid incorrectly writing the formula as Mg2+Br–2
(c) Aluminium fluoride, formula AlF3 means a ratio of
one Al3+ ion to three F- ions.
So, you would write the
ionic formula of aluminium fluoride as
Al3+(F–)3
Unfortunately the names of ionic compounds don't usually
include prefixes or suffixes to help you work out the numbers of ions in a
formula.
So you need to know the charges on the common ions of groups 1, 2, 6
and 7, and this has been explained in detail in the preceding section.
If you
know how to work out the charge on ions from the periodic table, you can then
work out the correct 'ratio' formula.
There is section near the end on showing
you examples of working out ionic formula.
(2) Appendix
1. How to work out the formula for an ionic compound given the constituent ions
Note
that the formulae you deduce are empirical formula, the
simplest whole number ratio of atoms in the formulae.
Table (2) Selected
ions and charges
From the table above can you
work out the formula of potassium bromide, sodium oxide, magnesium chloride,
iron(III) fluoride, calcium nitrate, iron(III) sulfate, magnesium hydroxide,
potassium carbonate, calcium iodide, magnesium nitrate and zinc sulfate
ANSWERS explained below - see how how you get on even before studying this
section on how to work out an ionic formula
In the electrically
balanced stable formula, the total positive ionic charge must
equal the total negative ionic charge i.e. the total charge is zero.
To work out an ionic
formula by combining ion 'A' with
ion 'B' the rule is:
number of ion 'A' x
charge of ion 'A' = number of ion 'B' x charge of ion 'B'
(you
ignore charge sign as long as you realise that A and B have opposite
charges)
In doing so, you are
working out the ratio of ions in their giant ionic lattice.
Example: How do we
work out that the formula of aluminium oxide is Al2O3?
As difficult an example as any
you will have to work out!
Aluminium oxide
consists of aluminium ions Al3+ and oxide ions
O2–
number of Al3+
ions
x charge on Al3+ balances the number of O2–
ions x
charge on O2–
the simplest numbers
are 2 of Al3+ x 3 balances 3 of O2– x 2
(total 6+ balances total 6–)
so the simplest whole
number formula for aluminium oxide is Al2O3
More examples
of working out the empirical formula of an ionic compound
Reminder:
By applying similar logic you can work
out the charge on one ion, knowing the formula and charge on the other
ion
e.g. supposing a metal M forms
an ionic chloride compound MCl2, Cl will be the chloride ion
(charge single –), so to balance the two chloride ions, the metal ion must
carry a charge of 2+ i.e. the M2+ ion.
If a metal that forms a singly
charged positive ion M+, forms an ionic sulfide compound M2S,
the charge on the sulfur ion must be 2– i.e. S2–, to
balance the two + charges of the metal ion.
numerically ion charge = valency of A or
B to deduce the
formula
valency or ionic charge = the
combining power of the ion (see Table 1a above)
'molecular' or ionic style of
formula and compound name
1
of K+ balances
1 of Br– because 1
x 1 = 1 x 1
gives
KBr or K+Br–
potassium bromide
2
of Na+ balances
1 of O2– because 2 x 1 = 1 x 2
gives
Na2O or
(Na+)2O2–
sodium oxide
1
of Mg2+ balances
2 of Cl– because 1 x 2 = 2 x 1
gives
MgCl2 or
Mg2+(Cl–)2 magnesium chloride
1
of Fe3+ balances
3 of F– because 1 x 3 = 3 x 1
gives
FeF3 or Fe3+(F–)3 iron(III) fluoride
1
of Ca2+ balances
2 of NO3– because 1 x 2 = 2 x 1
gives
Ca(NO3)2
or Ca2+(NO3–)2 calcium
nitrate
2
of Fe3+ balances
3 of SO42– since 2 x 3 = 3 x 2
gives
Fe2(SO4)3 or
(Fe3+)2(SO42–)3
iron(III) sulfate
1 of Mg2+
is balanced by
2 OH–
giving
Mg(OH)2 magnesium
hydroxide
2 of K+ is balanced by
1 CO32–
giving
K2CO3
potassium carbonate
1 of Ca2+ is balanced by
2 of I–
giving
CaI2 calcium iodide
1 Mg2+ is balanced by
2 NO3–
giving
Mg(NO3)2 magnesium
nitrate
1 Zn2+ is balanced by
1 SO42–
giving
ZnSO4 zinc sulfate
I hope that is enough examples
of working out, naming and writing out an ionic formula!
(3) Working out a formula from periodic table patterns.
|
Table (3) The periodic table pattern
of charges on ions
|
Pd |
metals |
Part of the modern Periodic Table
Pd = period,
Gp = group |
metals =>
non–metals |
|
Gp1 |
Gp2 |
Gp3 |
Gp4 |
Gp5 |
Gp6 |
Gp7 |
Gp0 |
|
1 |
1H
Note that H does not readily fit into any group
|
2He |
|
2 |
3Li |
4Be |
atomic number
Chemical Symbol e.g. 4Be |
5B |
6C |
7N |
8O |
9F |
10Ne |
|
3 |
11Na |
12Mg |
13Al |
14Si |
15P |
16S |
17Cl |
18Ar |
|
4 |
19K |
20Ca |
21Sc |
22Ti |
23V |
24Cr |
25Mn |
26Fe |
27Co |
28Ni |
29Cu |
30Zn |
31Ga |
32Ge |
33As |
34Se |
35Br |
36Kr |
|
5 |
37Rb |
38Sr |
39Y |
40Zr |
41Nb |
42Mo |
43Tc |
44Ru |
45Rh |
46Pd |
47Ag |
48Cd |
49In |
50Sn |
51Sb |
52Te |
53I |
54Xe |
|
6 |
55Cs |
56Ba |
Transition Metals |
81Tl |
82Pb |
83Bi |
84Po |
85At |
86Rn |
|
Gp 1
Alkali Metals,
Gp 2
Alkaline Earth Metals,
Gp 7
Halogens,
Gp 0 Noble Gases
Ionic chemical bonding comments about the
selected elements highlighted in white
|
The
charge is based on the number of electrons lost (giving positive
ions) or gained (giving negative ions) forming a noble gas
electron structure, i.e. to leave the ion with a full outer shell of electrons
|
|
CATIONS from metals |
ANIONS from non–metals |
|
Group 1 |
Group 2 |
Group 3 |
Group 6 |
Group 7 |
|
lithium ion
Li+ |
beryllium ion Be2+ |
|
oxide ion
O2– |
fluoride ion
F– |
|
sodium ion Na+ |
magnesium ion Mg2+ |
aluminium ion Al3+ |
sulfide ion S2– |
chloride
ion
Cl– |
|
potassium ion K+ |
calcium ion Ca2+ |
|
|
bromide ion Br– |
| |
|
|
|
iodide ion I– |
|
positive cation↓
negative anion
→ |
chloride
ion
Cl– |
bromide ion Br– |
oxide ion
O2– |
|
sodium ion Na+ |
sodium
chloride NaCl |
sodium
bromide NaBr |
sodium
oxide Na2O |
|
potassium ion K+ |
potassium chloride KCl |
potassium bromide KBr |
potassium oxide K2O |
|
magnesium ion Mg2+ |
magnesium chloride MgCl2 |
magnesium bromide MgBr2 |
magnesium oxide MgO |
|
calcium ion Ca2+ |
calcium
chloride CaCl2 |
calcium
bromide CaBr2 |
Calcium
oxide CaO |
Note the simple periodic table
pattern of formulae.
See section (4) for more on
naming ionic compounds
and (2)
How to work out ionic
formula (this section assumes you can i.e. total positive cation
charge equals total negative anion charge).
(4) Appendix 2
How do you name simple ionic
compounds?
How to name ionic compounds: Naming simple
ionic compounds isn't difficult and through your course you get used to
the names as they crop up.
The name usually consists of two
parts, first the name of the positive metal ion, and secondly, the name of
the negative ion derived from the non–metal.
For the metal ions (cations) it
couldn't be easier, its just the metal name itself e.g. sodium,
magnesium, aluminium etc.
For the Na+ ion e.g.
sodium chloride
For the Mg2+ ion e.g.
magnesium bromide
For the Al3+ ion
e.g..
aluminium oxide etc.
However, there is one complication
when a metal can form two different ions like copper or iron.
In these cases the two ions are
distinguished in the name by a Roman numerals number in brackets after the
name of the metal which corresponds to the numerical value of the positive
charge on the metal ion.
e.g. Cu2O
copper(I) oxide contains the Cu+ copper(I) ion,
and CuO copper(II) oxide contains the
Cu2+ copper(II)
ion
and FeCl2
iron(II) chloride contains the Fe2+ iron(II) ion,
and
iron(III) chloride
FeCl3 contains the Fe3+ iron(III)
ion.
However, things are a bit more complicated
for the negative ions (anions) because although the name of the
ion is derived from the name of the non–metallic element, it is a bit
different.
Oxygen forms the oxide ion, sulfur the
sulfide ion etc. the names of these anions from group 6 end in ..ide,
e.g. sodium oxide, magnesium
oxide, aluminum oxide
Fluorine forms the fluoride ion, chlorine
the chloride ion, bromine the bromide ion and iodine the iodide ion.
The names of the anions from
group 7 halogens (naming ending ...ine) end in ...ide, the halide
ions),
e.g. potassium fluoride, sodium
chloride, calcium bromide etc.
The name only ends in ide, when the metal
is only combined with one other non–metal element e.g. oxygen forming
an oxide, sulfur forming a sulfide, other 'ide's include
nitrides from nitrogen and phosphides from phosphorus.
For anions where two or more
non–metallic atoms are combined in a single ion, and one of them is oxygen, the
name often ends in ..ate (NOT oxide)
e.g. carbonate (C + O, CO3), sulfate
(S + O, SO4),
nitrate (N + O, NO3), chlorate (Cl +
O, ClOx x varies) etc.
see their formula in the
table 1a. of Appendix 1 above.
(5) Appendix 3. LINKS to Tests for Cations
and Anions
These are all written up in detail
on other pages, so see ...
TESTS for Metal cations (positive ions),
Group 1 The Alkali Metals and
Transition
Metals
TESTS for Anions (negative ions)
and Group
7 The Halogens
There is also a
summary of tests for GCSE level in
the salt preparation section
What
next?
GCSE Foundation
tier (easier)
m/c QUIZ on structure, properties & chemical bonding
of materials
GCSE Higher
tier (harder) m/c QUIZ on structure, properties and chemical bonding of
materials
Sub-index for:
Part 2
Ionic Bonding: compounds and properties
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