Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (2024)

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (1)

Ready to learn how to draw the lewis structure of BrO3- ion?

Awesome!

Here, I have explained 6 simple steps to draw the lewis dot structure of BrO3- ion (along with images).

So, if you are ready to go with these 6 simple steps, then let’s dive right into it!

Lewis structure of BrO3- (or Bromate ion) contains two double bonds and one single bond between the Bromine (Br) atom and Oxygen (O) atom. The Bromine atom (Br) is at the center and it is surrounded by 3 Oxygen atoms (O). The Bromine atom has 1 lone pair. And the single bonded oxygen atom has -1 formal charge.

Let’s draw and understand this lewis dot structure step by step.

(Note: Take a pen and paper with you and try to draw this lewis structure along with me. I am sure you will definitely learn how to draw lewis structure of BrO3-).

6 Steps to Draw the Lewis Structure of BrO3-

Step #1: Calculate the total number of valence electrons

Here, the given ion is BrO3- (bromate ion). In order to draw the lewis structure of BrO3- ion, first of all you have to find the total number of valence electrons present in the BrO3- ion.
(Valence electrons are the number of electrons present in the outermost shell of an atom).

So, let’s calculate this first.

Calculation of valence electrons in BrO3-

  • For Bromine:
Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (2)

Bromine is a group 17 element on the periodic table. [1]

Hence, the valence electrons present in bromine is 7 (see below image).

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (3)
  • For Oxygen:
Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (4)

Oxygen is a group 16 element on the periodic table. [2]

Hence, the valence electron present in oxygen is 6 (see below image).

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (5)

Hence in a BrO3- ion,

Valence electrons given by Bromine (Br) atom = 7
Valence electrons given by each Oxygen (O) atom = 6
Electron due to -1 charge, 1 more electron is added
So, total number of Valence electrons in BrO3- ion = 7 + 6(3) + 1 = 26

Step #2: Select the center atom

While selecting the atom, always put the least electronegative atom at the center.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (6)

(Remember: Fluorine is the most electronegative element on the periodic table and the electronegativity decreases as we move right to left in the periodic table as well as top to bottom in the periodic table). [3]

Here in the BrO3- ion, if we compare the bromine atom (Br) and oxygen atom (O), then the bromine is less electronegative than oxygen.

So, bromine should be placed in the center and the remaining 3 oxygen atoms will surround it.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (7)

Step #3: Put two electrons between the atoms to represent a chemical bond

Now in the above sketch of BrO3 molecule, put the two electrons (i.e electron pair) between each bromine atom and oxygen atom to represent a chemical bond between them.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (8)

These pairs of electrons present between the Bromine (Br) and Oxygen (O) atoms form a chemical bond, which bonds the bromine and oxygen atoms with each other in a BrO3 molecule.

Step #4: Complete the octet (or duplet) on outside atoms. If the valence electrons are left, then put the valence electrons pair on the central atom

Don’t worry, I’ll explain!

In the Lewis structure of BrO3, the outer atoms are oxygen atoms.

So now, you have to complete the octet on these oxygen atoms (because oxygen requires 8 electrons to have a complete outer shell).

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (9)

Now, you can see in the above image that all the oxygen atoms form an octet.

Also, only 24 valence electrons of BrO3- ion are used in the above structure.

But there are total 26 valence electrons in BrO3- ion (as calculated in step #1).

So the number of electrons left to be kept on the central atom = 26 – 24 = 2.

So let’s keep these 2 electrons (i.e electron pair) on the central atom.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (10)

Now, let’s move to the next step.

Step #5: Check whether the central atom has octet or not

In this step, we have to check whether the central atom (i.e bromine) has an octet or not.

In simple words, we have to check whether the central Bromine (Br) atom is having 8 electrons or not.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (11)

As you can see from the above image, the central atom (i.e bromine), is having 8 electrons. So it fulfills the octet rule and the bromine atom is stable.

Step #6: Final step – Check the stability of lewis structure by calculating the formal charge on each atom

Now, you have come to the final step and here you have to check the formal charge on bromine atom (Br) as well as each oxygen atom (O).

For that, you need to remember the formula of formal charge;

Formal charge = Valence electrons – Nonbonding electrons – (Bonding electrons)/2

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (12)
  • For Bromine:
    Valence electrons = 7 (as it is in group 17)
    Nonbonding electrons = 2
    Bonding electrons = 6
  • For Oxygen:
    Valence electron = 6 (as it is in group 16)
    Nonbonding electrons = 6
    Bonding electrons = 2
Formal charge=Valence electronsNonbonding electrons(Bonding electrons)/2
Br=726/2=+2
O=662/2=-1

So you can see above that the formal charge on bromine is +2 and the formal charge on all the three oxygen atoms is -1.

This indicates that the above lewis structure of BrO3 is not stable and so we have to minimize the charges to get a more stable lewis structure.

This can be done by shifting the lone pairs from negatively charged oxygen atoms to the positively charged bromine atom to form a double bonds.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (13)

Now, in the above structure, you can see that the charges are minimized and the above lewis structure of BrO3- is the final stable structure.

There is a -ve charge left on the oxygen atom, which indicates the -1 formal charge on the BrO3- ion.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (14)

Each electron pair (:) in the lewis dot structure of BrO3- ion represents the single bond ( | ). So the above lewis dot structure of BrO3- ion can also be represented as shown below.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (15)

Related lewis structures for your practice:
Lewis structure of CBr4
Lewis structure of OCN-
Lewis structure of ICl4-
Lewis structure of SiF4
Lewis structure of CH3F

Article by;

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (16)

Jay Rana

Jay is an educator and has helped more than 100,000 students in their studies by providing simple and easy explanations on different science-related topics. With a desire to make learning accessible for everyone, he founded Knords Learning, an online learning platform that provides students with easily understandable explanations.Read more about our Editorial process.

Author

Jay Rana

Jay is an educator and has helped more than 100,000 students in their studies by providing simple and easy explanations on different science-related topics. With a desire to make learning accessible for everyone, he founded Knords Learning, an online learning platform that provides students with easily understandable explanations.

Read more about our Editorial process.

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!) (2024)

FAQs

Lewis Structure of BrO3- (With 6 Simple Steps to Draw!)? ›

The Lewis structure of B r O 3 − , 3 oxygen atoms attached to the central bromine atom to complete the octet of each atom in the structure. In this structure bromine has 7 valenceelectron while oxygen has 6 electrons. This structure obeys the octet rule.

What is the Lewis structure of BrO3? ›

The Lewis structure of B r O 3 − , 3 oxygen atoms attached to the central bromine atom to complete the octet of each atom in the structure. In this structure bromine has 7 valenceelectron while oxygen has 6 electrons. This structure obeys the octet rule.

How many equivalent resonance structures can be drawn for the bromate ion bro31 drawn where the central bromine atom has a formal charge of zero? ›

Expert-Verified Answer

In Bro3− ion, all oxygen atoms are the same, so the three oxygen atoms contribute equally to the overall resonance hybrid. As a result, we can only draw three equivalent resonance structures for the ion Bro3−. Therefore, the correct answer is 3.

What is the Vsepr structure of BrO3? ›

Final answer: The bromate ion, BrO3-, will have a trigonal pyramidal shape according to the VSEPR theory. This is because it has three bond pairs and one lone pair, causing the bonds to be pushed downward and form a pyramid-like shape.

What is the Lewis structure of structure? ›

A Lewis Structure is a very simplified representation of the valence shell electrons in a molecule. It is used to show how the electrons are arranged around individual atoms in a molecule. Electrons are shown as "dots" or for bonding electrons as a line between the two atoms.

What are the steps used to draw the Lewis structure? ›

Step 1: Determine the total number of valence electrons. Step 2: Write the skeleton structure of the molecule. Step 3: Use two valence electrons to form each bond in the skeleton structure. Step 4: Try to satisfy the octets of the atoms by distributing the remaining valence electrons as nonbonding electrons.

How to draw Lewis structure with charge? ›

For cations, subtract one electron for each positive charge. For anions, add one electron for each negative charge. Draw a skeleton structure of the molecule or ion, arranging the atoms around a central atom. (Generally, the least electronegative element should be placed in the center.)

How many resonance structures are in BrO3? ›

It has three energetically equivalent resonance structures.

How many resonance structures that can be drawn for the cyclopentadienyl cation? ›

The lone pair electrons and the negative charge are conjugated about the entire ring making each carbon in the cyclopentadienyl anion equivalent with 1/5 the negative charge. The resonance hybrid can be shown by drawing a series of five resonance form.

What is the formal charge on the bromine atom in BrO3? ›

Answer and Explanation:

The formal charge on the bromine atom in [ B r O 3 ] − is -2, which is choice c. First, we'll start by drawing the Lewis dot structure for [ B r O 3 ] − . The total number of valence electrons in this ion are 7 + 3 ( 6 ) + 1 = 26 .

What is the structure shape of BrO3? ›

Overall, the shape and expected hybridization of BrO3- is trigonal pyramidal (3 bonded atoms and 1 lone pair) with sp3 hybridization, while the shape and expected hybridization of HOCl is bent/angular (2 bonded atoms and 1 lone pair) with sp2 hybridization.

What is the bond order of BrO3? ›

The bond order is calculated by dividing the number of bonding electrons by the number of bonding orbitals. In the case of the bromate ion, there are three bonding electrons and three bonding orbitals, resulting in a bond order of 1. This means that each bromine-oxygen bond in the bromate ion has a bond order of 1.

What is the shape of BrO3 negative? ›

The BrO₃⁻ ion is trigonal pyramidal in shape. Neutral BrO3 as written does not exist, at least not for long. (It would require some kind of high energy radical) The bromate ion, BrO3- has a trigonal pyramidal geometry.

What is the compound BrO3? ›

The bromate anion, BrO 3, is a bromine-based oxoanion. A bromate is a chemical compound that contains this ion. Examples of bromates include sodium bromate, (NaBrO. 3), and potassium bromate, (KBrO.

How does the Lewis structure minimize formal charge of BrO3? ›

Re: Lewis Structure of BrO3-

However, it is best to reduce the formal charges as much as possible since doing so would yield a more stable structure. With double bonds, Br and two O atoms would have a formal charge of 0, thus leaving the remaining O atom with a charge of -1.

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