Alkanes: Formula, Structure & Properties

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Arpita Srivastava

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Alkanes are organic molecules containing only single-bonded carbon and hydrogen atoms. It is an acyclic, branched, or unbranched hydrocarbon having the general formula CnH2n+2.

  • Alkanes are subdivided into chain alkanes, cycloalkanes, and branched alkanes.
  • They do not belong to any other functional groups.
  • Alkanes are chemical molecules that are organized in a tree structure with single carbon-carbon bonds.
  • They are also known as paraffin, as they have a lesser affinity for general reagents.
  • Methane is considered the simplest compound that belongs to this category.
  • They are considered aliphatic saturated hydrocarbons.
  • Since alkanes contain a high number of carbon atoms, they are also used as anti-corrosive agents. 

Key Terms: Alkanes, Hydrocarbons, Methane, Paraffin, Molecules, Functional Groups, Carbon, Hydrogen, Atom, Organic Compounds, Straight Chain Alkanes, Branched Chain Alkanes, Reagents


What are Alkanes?

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Alkanes are a type of hydrocarbon which forms an open-chain structure. It is the simplest organic compound that is made by using only carbon and hydrogen atoms. 

  • These hydrocarbons are also regarded as the primary organic substance.
  • In alkane hydrocarbon, all four valencies of carbon atoms are satisfied by four atoms or a group of atoms.
  • The chain structure of the compound is called octane.
  • It is the longest hydrocarbon with a molecular formula of C₈H₁₈.
  • These items are extensively spread in nature and are used for various purposes. 

Example of What are Alkanes?

Example 1: Some examples of such items are coal, petroleum and natural gas. 

Example 2: The molecular formula of Methane is CH4 . It contains one Carbon atom and 4 Hydrogen atoms. Only a single covalent bond is present in this compound.

  • It has a simple structure as only one carbon atom is present.
  • The structure of methane is:
Simple and Long Chained Alkanes
Simple and Long Chained Alkanes

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Structure of Alkanes

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The molecular formula of alkanes is CnH2n+2The carbon atom in the compound is sp3 hybridized. It forms C-H sigma bonds by the axial overlap of the sp3 hybrid orbital of carbon and the s orbital of hydrogen.

  • The atoms of C – C and C-H will have a bond lengths of 154 pm and 112 pm respectively.
  • When identical compounds are attached to carbon atoms then they will form a condensed structure.
  • The molecules are represented in a zig-zag manner.
  • It has a bond angle of 109°28′.
  • The shape of the compound is tetrahedral.
  • The alkanes consist of a carbon atom lying at the centre and four hydrogen atoms at the four comers. 
Structure of Alkanes 

Structure of Alkanes 


Types of Alkanes

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Alkanes are divided into three subgroups: chain alkanes, cycloalkanes, and branched alkanes. The basic difference among all three is the structure of these molecules.

Chain Alkanes

Chain alkanes or straight chain alkanes consist of each carbon atom bonded with not more than two other carbon atoms. It is also known as normal alkanes. 

  • It will form a carbon chain of atoms without branching.

Example of Chain Alkanes

Example 1: Hexane is represented as CH3−CH2−CH2−CH2−CH2−CH3.

Chain Alkanes
Chain Alkanes

Cyclo Alkanes

Cycloalkanes are a class of hydrocarbons that will form a ring-like structure. These compounds have the general formula CnH2n . These compounds have different properties based on their structure.

Cyclo Alkanes
Cyclo Alkanes

Branched Chain Alkanes

Branched-chain alkanes are a type of alkanes where at least one carbon atom is bonded with more than two other carbon atoms. Isoalkanes and neo alkanes are two types of alkanes.

Branched Alkanes
Branched Alkanes

List of Alkanes and its structures

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The different types of alkanes and its structures are as follows:

Name of Alkanes Molecular Formulae Structural Formula
Methane CH4 Methane | Gas Encyclopedia Air Liquide
Ethane C2H6 Ethane | Gas Encyclopedia Air Liquide
Propane C3H8 Propane | Gas Encyclopedia Air Liquide
Butane C4H10 n-Butane | Gas Encyclopedia Air Liquide
Pentane C5H12 Illustrated Glossary of Organic Chemistry - Pentane
Hexane C6H14 Illustrated Glossary of Organic Chemistry - Hexane
Heptane C7H16 Illustrated Glossary of Organic Chemistry - Heptane
Octane C8H18 Illustrated Glossary of Organic Chemistry - Octane
Nonane C9H20 Illustrated Glossary of Organic Chemistry - Nonane
Decane C10H22 Illustrated Glossary of Organic Chemistry - Decane

Physical Properties of Alkane

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Some of the important physical properties of alkanes are,

Solubility of Alkanes

Since alkanes consists of covalent connections between C-C and C-H, as well as the very tiny differences in electronegativities of carbon and hydrogen, they are often non-polar molecules.

  • We know that polar molecules dissolve in polar solvents and nonpolar molecules dissolve in nonpolar solvents.
  • Therefore alkanes are either insoluble in water or hydrophobic in nature.

They are soluble in organic solvents because the energy required to overcome existing Van Der Waals forces and generate new Van Der Waals forces is very similar.

  • When a non-polar alkane is put to a polar solvent, water molecules and alkane molecules are both attracted to each other.
  • However water and alkane molecules are not attracted to each other.

Melting Point of Alkanes

The melting point of Alkanes also increases with the increase in molecular weight. It is difficult to break the intermolecular forces of attraction between higher alkanes as they are generally solids.

  • Even-numbered alkanes pack better in the solid phase than odd-numbered alkanes.
  • It forms a well-organised structure that is difficult to break.
  • This result in a higher melting point for even-numbered alkanes than odd-numbered alkanes.

Boiling Point of Alkanes

The boiling point of alkanes increase with increase in molecular weight as intermolecular Van Der Waals forces increase. The straight chain alkanes have higher boiling point in comparsion to structural isomers.

Smell and Colour

Alkanes are colourless and odourless. They possess Van der Waals force of attraction.

State of Matter

Alkanes, having one to four carbon atoms, are gases in nature. Those compounds with five to seven carbon atoms are liquid in nature. Any alkane with 18 or more carbon atoms is solid in nature.

  • Alkanes form bonds with carbon or hydrogen atoms. 

Density

Alkanes float because their density is lower than that of water. As molecular mass rises, density rises as well. Apart from weak Van der Waals forces, London forces, and dispersion forces, alkane molecules are held together by weak intermolecular interactions.


Chemical Properties of Alkane

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The chemical properties of alkanes are as follows:

Combustion

When alkanes are exposed to too much oxygen (O2), they easily burn, releasing carbon dioxide gas, water, and energy in the form of heat and light.

CH4 + O2 ------→ CO2 + H2O

Halogenation

Alkanes have a very strong bond, which makes them less reactive. They do not react with halogens without ultraviolet rays. Halogenated alkanes are produced by using UV rays. 

CH4 + Cl2 ------→ CH3Cl + HCl

Pyrolysis of Alkanes

Pyrolysis of Alkanes involves the decomposition of alkanes in the absence of air to give lower alkanes. The nature of products depend upon the pressure, structure of alkanes and presence or absence of a catalyst.

C6H14  ------→C6H12 + H2

Nitration of Alkanes

Nitration of alkanes involves the replacement of hydrogen atoms with the nitro group, which is carried out in the vapour phase. The process is carried out by heating a mixture of alkane and concentrated nitric acid.

R– H + HO – NO2 -------→ R-NO2 + H2O


Alkanes Formula and its Condensed Structures

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The different alkanes formula and its condensed structure are as follows:

Name Molecular Formula Condensed Structural Formula 
Methane CH4 CH4
Ethane C2H6 CH3CH3
Propane C3H8 CH3CH2CH3
Butane C4H10 CH3(CH2)2CH3
Pentane C5H12 CH3(CH2)3CH3

Preparation of Alkanes

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Different ways of preparation of alkanes are as follows:

Hydrogenation

Alkenes and alkynes are unsaturated hydrocarbons that undergo hydrogenation over Raney nickel as a catalyst at a temperature of about 473K to 573K. It is also known as the Sabatier and Sanderson reaction. 

CnH2n + H2 ----→ CnH2n+2

Decarboxylation

Decarboxylation involves a reaction in which carbon dioxide is separated from carboxylic acid. It involves the fusion of anhydrous sodium salt of fatty acid with soda.

CH3COONa + NaOH ---------→ CH4 + Na2CO3

Wurtz Synthesis

Wurtz Synthesis involves heating alkyl halides with sodium metal in the presence of dry ether as solvent. Higher alkanes can be prepared with the lower alkyl halides.


Uses of Alkanes

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Alkanes are very useful compounds. Some of the properties that make it useful are as follows:

  • Propane and butane, when liquefied at low temperatures, are utilised as propellants or aerosol sprays in propane gas burners.
  • Pentane to octane fuels are suitable for internal combustion engines.
  • The viscosity of nonane to hexadecane is high; as a result, it is used in diesel and aviation fuel.
  • C35 alkanes are utilised in paraffin wax candles, anti-corrosive compounds, and lubricating oil. 
  • Higher alkanes are broken down into lower alkanes before being used.

Important Topics for JEE Main  

As per JEE Main 2024 Session 1, important subtopics included in the alkanes are as follows:

  • Functional Group
  • Saturated Hydrocarbon
  • Wurtz Synthesis
  • Decarboxylation

Some memory based important questions asked in JEE Main 2024 Session 1 include:

  1. Find the total number of different alkanes formed when the following mixture is subjected to electrolysis (do not consider disproportionation reaction): CH3COONa (aq) and C2H5COONa (aq).

Things to Remember

  • Alkane is a chemical molecule that is made up of hydrogen and carbon atoms.
  • They are divided into three subgroups: chain alkanes, cycloalkanes, and branched alkanes.
  • Hydrocarbons are also regarded as the primary organic substance
  • They are colourless and odourless, which are less reactive compounds.
  • Straight-chained alkanes have higher boiling points and melting points.

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Sample Questions

Ques: What are alkanes? (2 marks)

Ans: Alkanes are saturated hydrocarbons. To put it simply, Alkane is a chemical molecule that is made up of hydrogen and carbon atoms. Their carbon atoms are closely packed with hydrogen which makes it less reactive.

Ques: What is the general formula for the structure of Alkanes? (1 mark)

Ans: The formulae for the structure of alkanes is CnH2n+2 where n is the number of carbon atoms. 

Ques: Write the structure of C7H16? (2 marks)

Ans: The structure of C7H16  is 

C7H16

Ques: Why do longer alkane chains have higher melting and boiling point? (2 marks)

Ans: The number of electrons in a molecule increases as the carbon chain lengthens. This indicates that the molecules have more (relatively) stronger intermolecular forces. As a result, it takes more energy to break these forces, resulting in greater melting or boiling temperatures.

Ques: What is the process to name alkanes? (3 marks)

Ans: Alkanes are named according to the norms of IUPAC. All alkanes have a common suffix -ane and the full name is determined by the number of carbon atoms. For example: An alkane with one carbon is methane, with two carbon is ethane and so on. The normal chain alkanes can be generally written with a prefix ‘n’ like n-propane, n-hexane etc., but for isomeric alkanes, the prefix ‘iso’ and ‘neo’ are used.

Ques: What do you mean by alkyl groups: (2 marks)

Ans: The alkyl group is formed when an alkane with hydrogen is separated from a bond. It is very often referred to as ‘R’, which is the same as halogens, which are referred to by the letter ‘X’. When an alkane molecule gets attached to a substituent group like halogen, it gets transformed from a carbon hydrogen bond to a carbon substituent bond.

Ques: How many covalent bonds does ethane have? (2 marks)

Ans: Ethane has seven covalent bonds. The molecular formula of ethane is C2H6 where there are 6 bonds between carbon and hydrogen and one bond between carbon and carbon. Here each hydrogen atom shares one electron with carbon to form a covalent bond and the two carbon atoms also share one electron to form a carbon-carbon covalent bond.

Ques: Explain the structure of octane? (3 marks)

Ans: Let us look at the structure of Octane. Octane consists of 8 carbon atoms bonded to one another in a long chain alkane molecule by a single covalent bond. A total of four single covalent connections are formed when each atom is connected to enough hydrogen atoms. Octane refers to the whole long-chain structure. It’s structure is,

Simple and Long Chained Alkanes

Ques: What are the physical properties of alkanes? (3 marks)

Ans: The physical properties of alkanes are as follows:

  • Alkanes are colourless and odourless.
  • There density is lower than that of water.
  • These molecules are held together by weak intermolecular interactions.
  • Melting point of alkanes also increases with the increase in molecular weight.

Ques: Why alkanes are considered non-polar molecules? (2 marks)

Ans: Alkanes are considered non-polar molecules because of the covalent connections between C-C and C-H, as well as the very tiny differences in electronegativities of carbon and hydrogen. We know that polar molecules dissolve in polar solvents and nonpolar molecules dissolve in nonpolar solvents, therefore alkanes are either insoluble in water or hydrophobic in nature.

Ques: What is alkyl groups? (2 marks)

Ans: Alkyl group involves one carbon-hydrogen bond in an alkane molecule is changed into a carbon-substituent bond when a substituent, such as halogen, forms a bond with it. It is created when an alkane that contains hydrogen is separated from one bond. Similar to how halogens are represented by the letter X, this alkyl group is commonly shown by the letter R. 

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