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Batteries are electrochemical devices, which contain one or more electrochemical cells and can be charged with an electric current. Batteries can be discharged whenever required.
- Batteries are devices composed of multiple electrochemical cells connected to external inputs and outputs.
- It is widely used to power small electric devices, including mobile phones, remotes and flashlights.
- Historically, the term ‘battery’ has been used to refer to a combination of two or more electrochemical cells.
- However, the modern battery definition only applies to accommodate devices featuring a single cell.
- Batteries can be classified into two types, namely primary batteries and secondary batteries.
- Alessandro Volta is responsible to create the first electric battery.
| Table of Content |
Key Terms: Nernst Equation, Standard Electrode Potential, Temperature, Electricity, Metals, Electrochemistry, Oxidation, Reduction, Cell, Battery
What is a Battery?
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A battery is a collection of electrochemical cells that serves as a source of energy. An oxidation-reduction reaction is the foundation of an electrochemical cell.
The following properties must be present in a practical or useful battery:
- It has to be light-weight and small in size.
- A consistent voltage must be provided by the cell or battery. Furthermore, while using, the battery or cell's voltage must not change.
Terms Related to Batteries
Some important terms related to batteries include:
- Power Capacity: It is the energy stored in a battery and can be measured in Watt-hour.
- Power Capability: It can be defined as the maximum amount of current a battery is capable of delivering. It is also termed C-rating.
- Nominal Voltage: Nominal voltage is when the voltage of the battery is constant and is not variable.
- Charging Current: Charging Current can be defined as the maximum amount of current which can be applied to a battery to charge.
- Charging Voltage: It can be defined as the maximum amount of voltage which needs to be applied to the battery to charge it effectively.
- Discharging Current: It is the maximum current which can be drawn out of the battery, thus delivering to load. In case the current drawn overextends the stated discharging current, the battery might start to drain up fast, causing it to heat up.
- Shelf Life: The shelf-life can be expressed as the time for which the battery can stay powered up and usable. It can be found in non-rechargeable batteries since they are for single usage.
- Cut-off Voltage: The voltage for which the battery might get considered as completely discharged is the cut-off voltage.
- Cycle Life: In case a battery is completely charged but discharges to 80% of its original capacity, then it had a complete cycle. The number of cycles a battery is seen to complete is defined as the cycle life.

Batteries Infographic
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Types of Batteries
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There are two types of batteries or practical cells used in commercial values. These are the following:
- Primary battery
- Secondary battery
Primary Cell
Power is generated via a chemical reaction in the primary cells. The reaction is only one-way in this case. We will not be able to reverse this phenomenon. As a result, these cells die after a certain period. A primary cell cannot be reused or recharged. Daniell cell, Dry cell, and Mercury cell are examples of primary cells.
Daniell Cell
A copper vessel holds a concentrated solution of copper sulphate in the Daniell cell. In the copper vessel containing copper sulphate solution, a porous pot containing dilute sulphuric acid is placed.

Daniell Cell
Dilute sulphuric acid is used to dip a zinc rod. Here, the Zinc electrode acts as an anode, while the copper container acts as a cathode. The following are the reactions that occur in the cell:
At anode: Zn(s) →Zn2+(aq) + 2e-
At cathode: Cu2+(aq) + 2e- →Cu(s)
Net cell reaction: Zn(s) + Cu2+(aq) →Cu(s) + Zn2+(aq)
The cell may be represented as,
Zn(s) | Zn2+(aq) || Cu2+(aq) | Cu(s)
(anode) (cathode)
The emf of a Daniell cell is 1.1 V.
Dry Cell
The dry cell is a compact version of the LeClanche cell. It comprises a zinc outer container that serves as an anode. A porous insulating paper is used to line the zinc content of the cell from the inside. A carbon rod with a brass cover serves as the cathode.

Dry Cell
Between the cathode and the anode, a gap is filled with a mixture of MnO2, a thick paste of ammonium chloride (NH4Cl), zinc chloride (ZnCl2), and charcoal. The porous paper lining keeps the zinc container from coming into direct contact with the paste. It performs the function of a salt bridge. Pitch or wax is used to seal the cell from the top.
Reactions that occur during the discharge:
At anode: Zn(s) →Zn2++ 2e-
Zn2+ ions move towards the carbon electrode (cathode). At the cathode, the reaction is
At cathode: MnO2+ NH4++ e- → MnO (OH) + NH3MnO2
It has a depolarizing effect. In a cathodic reaction, the state of manganese is lowered from + 4 to + 3. The ammonia molecules generated at the cathode combine with Zn2+ ions from the anode to form Zn(NH3)42+, a complex ion. The absorption of Zn2+ by NH3 molecules lowers the concentration of free Zn2+, causing the cell's voltage to rise. The potential of a dry cell is roughly 1.5 volts.
Mercury Cell
The mercury cell is a relatively new product available in the market. It provides a more consistent voltage. The Mercury Cell's emf is 1.35 V. The mercury cell is usually more expensive. This is why they are only found in high-tech devices such as cameras, hearing aids, and wristwatches.

Mercury Cell
In a Mercury cell, an amalgamated zinc plate with a steel top plate serves as the anode. The cathode is a mixture of mercury, mercury oxide, and carbon powder. The outer steel case comes into contact with it. The electrolyte is a KOH paste containing Zn(OH)2.
This paste is carried by an inert porous substance. A neoprene rubber insulating seal separates the two electrodes. During discharge, the following reactions occur:
At anode: Zn(Hg) + 2OH- →Zn (OH)2 + 2e-
At cathode: HgO + H2O + 2e- →Hg + 2OH-
Overall reaction: Zn(Hg) + HgO(s) →Zn(OH)2+ Hg(l)
Secondary Cell
The secondary cells, on the other hand, are the cells that perform repeated actions. After each use, these batteries can be recharged. The cells are recharged by passing electricity through them.
As a result, you can reuse these cells multiple times. Secondary cells include the lead-acid cell (or lead-acid battery), nickel-cadmium cell, and others.
Lead Acid Battery
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Each battery is made up of several voltaic cells that are connected in series. A 6 to 12-volt battery is usually made up of three to six of these cells.
- The cathode is a grid of lead packed with PbO2 and the anode is a grid of lead packed with finely divided spongy lead.
- The electrolyte is a sulphuric acid aqueous solution.
- At the anode, lead is oxidized to Pb2+ ions, resulting in the formation of insoluble PbSO4. PbO2 is reduced to Pb2+ ions and PbSO4 is formed at the cathode.

Lead Acid Battery
The lead acid battery undergoes the following reactions:
At Anode
The lead oxidizes to Pb2+ ions after losing two Electrons.
Pb(s)→ Pb2+ (aq) +2e-
Pb2+ (aq) + SO42- (aq) → PbSO4(s)
The anode reaction as a whole can be written as:
Pb(s) + SO42- (aq) → PbSO4(s) + 2e-
At Cathode
The PbO2 is reduced as the following:
PbO2 (s) + 4H+ +2 e¯¯ ———-> Pb2+ (aq) + 2 H2O
PbO2 (s) + SO42- (aq) →PbSO4(s)
The cathode reaction as a whole can be written as :
PbO2 (s) + 4H+ +2e- + SO42- (aq) → PbSO4(s) + 2 H2O
Pb(s) + SO42- (aq)→ PbSO4(s) + 2e-
PbO2 (s) + 4H+ + 2e- + SO42- (aq) → PbSO4(s) + 2H2O
Pb(s) +PbO2(s) + 2 H2SO4 (aq) → 2 PbSO4(s) + 2H2O
PbSO4 is generated at each electrode during the operation of the cell, and sulphuric acid is consumed. As a result, the density of the solution falls, and the concentration of H2SO4 decreases.
Recharging the Battery
By passing an electric current of an appropriate voltage in the opposite direction, the cell can be charged. The reaction between the electrodes is reversible. As a result, the electron flow is reversed, and lead is deposited on the anode while PbO2 is deposited on the cathode. Sulphuric acid's density rises as well.
The reaction could be written as follows:
2PbSO4 (s)+2H2O →Pb(s) + PbO2 (s) +2H2SO4
It functions as a voltaic cell and generates electric energy when used to start an automobile's engine. It functions as an electrolytic cell when recharging.
Nickel-Cadmium Battery Cell
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This is a rechargeable cell as well. It has a longer life than a lead acid battery, but it is more expensive. However, because it is smaller and lighter, it offers some advantages. It can be found in cordless and portable devices.
- It is made up of a cadmium anode and a metal grid with NiO2 as a cathode.
- KOH is the electrolyte in this cell.
During discharge and charge, the following reactions occur:
Anode
Cd(s)+2OH - CdO(s) +H2O(l) + 2e-
Cathode
2NI(OH3) (s) + 2e- → 2Ni(OH)2(s) +2OH- (aq)
Cd(s) + 2Ni(OH3) (s) → CdO(s) + 2Ni(OH)2(s) + H2O(l)
Recharging the cell allows the reaction products to adhere to the electrodes and be reconverted. The charging procedure is comparable to that of a lead-acid battery.
It generates a potential of around 1.4 volts.
Lithium-Ion Battery
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The lithium-ion battery, which is also called LIB, can be defined as a type of secondary battery that can be recharged.
- During the discharging process, the lithium ions pass from the negative electrode to the positive electrode (via the help of an electrolyte).
- These lithium ions travel back while charging. Lithium-ion batteries use intercalated lithium compounds in the positive electrode.
- In the negative electrode (as fuel) graphite is used.
Some characteristics of LIBs include:
- The lithium-ion battery is very stable and safe. It also has a very high energy capacity.
- LIBs can be used in mobile phones and portable laptops and tablets.
- It has a very slow self-discharge.
Fuel Cells
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The Fuel cells are voltaic cells with a constant supply of reactants to the electrodes. These are intended to immediately transform the energy generated by the combustion of fuels such as H, CO, CH4, and others into electrical energy.
1) In this cell, hydrogen and oxygen are bubbled into concentrated aqueous sodium hydroxide or potassium hydroxide via a porous carbon electrode.
2) The fuel (hydrogen) is supplied into the anode compartment and oxidized.
3) The oxygen is supplied into the cathode chamber and reduced there.
The following reaction takes place:
Anode
2[H2(g) + 2OH-(aq) →2H2O(1)+2e-]
Cathode
O2(g) + 2H2O(l) + 4e- →4OH-(aq)
2H2(g) +O2(g) → 2H2O (l)
Each electrode is constructed of porous compressed carbon with a small amount of catalyst embedded in it (Pt, Ag, or CoO). These fuel cells are more efficient than traditional methods of generating electricity on a wide scale by burning hydrogen and carbon fuels. The energy of the fuel is instantly converted into electricity via cells.
Function of battery
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The storage of energy in a battery, along with its transformation from one form to another one is called electrochemistry. An electrochemical cell supports the battery's functioning.
The functions of the battery include:
- A battery helps to supply electricity to a variety of electronic devices.
- It helps to store chemical energy and converts it to electrical energy.
- It functions as a voltage regulator.
Facts Related to Batteries
Batteries are of different forms, sizes, and voltages. Thus, some facts about it are:
- Batteries are relatively more expensive than mains power. However, the main power does not suit for mobile devices.
- Bicycles feature taillights that are seen to be powered by batteries
- Hand and foot generators can potentially be used as a replacement for batteries. However, they are extremely demanding.
- Fuel cells and solar cells do not fall under the category of batteries because they do not store energy,
- A Capacitor should not be confused with a battery. It is because it does not store energy in the chemical process.
Uses of Battery
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Some of the uses of batteries include"
- It is used in home appliances as well as medical devices
- It is also widely used in Construction.
- It is used in a variety of places, including military operations and firefighting.
- The battery is most prevalently used in automobiles.
Applications of Battery
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The battery is utilized in applications that need the storage of energy for later use.
- Batteries are commonly used in portable, emergency, and low-power equipment.
- A battery allows you to utilize a portable gadget, such as a mobile laptop, anywhere you desire.
- When there is no electricity, emergency equipment such as an inverter, torch, or other similar device is employed.
- Low-power gadgets, such as watches and oximeters, can run for a long period after the battery is replaced.
The mains supply is not appropriate in all circumstances. The battery size required is determined by a number of factors, including the amount of power required and the device's portability.
Let’s take an example, suppose we have a wall clock. The wall clock uses very little electricity. It can run for over two years on a 1.2V battery, but that is not the main reason. To acquire the proper time, the clock should be powered up at all times; this can be done with a battery. As a result, it is designed to use less power, allowing the clock to run for longer periods of time and making the battery an efficient means to deliver electricity on a continuous basis. We can conclude from the above example that the utilization of batteries is dependent on their condition and use.
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Things to Remember
- A battery is a type of electronic device used to store chemical energy and convert it to electrical energy.
- Batteries are employed as a power source in a variety of electrical gadgets around the world.
- Alessandro Volta invented the battery, but Gaston Plante invented the rechargeable battery.
- The negative side, the positive side, and the electrolyte are the three elements of a battery (the chemical which reacts with both sides).
- The electrolyte acts as an electron transport medium between the anode and the cathode.
- Its operation is based on electrochemical processes. Electrons migrate from one side to the other when the anode and cathode are connected to the external circuit.
- The two types of batteries that are usually used are primary and secondary batteries.
- Primary batteries include alkaline batteries and button cell batteries, whereas secondary batteries include lead-acid batteries, lithium-ion batteries, and nickel-cadmium batteries.
- The battery is used in situations where energy must be stored for later use. Portable, emergency, and low-power equipment frequently employ batteries.
Sample Questions
Ques. What exactly is a battery, and how does it work? (3 marks)
Ans. A battery is a significant device that stores chemical energy and then converts it to electrical energy as needed by the user.
The electrochemistry principle governs the operation of the batteries. The chemical reaction inside the cell continues, and electrons begin to develop in one of the electrodes. The electrons travel through the electrolyte to the other electrode, producing an electric circuit. This procedure generates the required electrical energy.
Ques. What are the various kinds of batteries? (2 marks)
Ans. Primary and secondary batteries are the two types of batteries that are commonly utilized.
- Alkaline batteries and button cell batteries are primary batteries.
- Lead-acid batteries, lithium-ion batteries, and nickel-cadmium batteries are secondary batteries.
Ques. How do Primary and Secondary Batteries differ? (3 marks)
Ans. Primary batteries are non-reversible in nature and have non-reversible cell processes. As a result, these batteries are unable to get recharged. Primary batteries must be discarded once they have been fully depleted. In contrast, secondary batteries are known to have reversible cell responses. As a result, by giving an electric current to the reactants in these batteries, they can be regenerated. As a result, secondary batteries can be recharged and discharged several times.
Ques. What exactly is a primary battery? What is a Lithium Battery, and how does it work? Are they similar in any way? (3 marks)
Ans. An answer is that a primary battery is a non-rechargeable battery that can only be used once. It's mostly found in low-cost electronics.
Lithium batteries, often known as Lithium-ion batteries, are rechargeable batteries. They're most commonly seen in portable electronic gadgets and vehicles, and they're very popular in military applications.
A lithium battery, on the other hand, is a secondary battery, not a primary one. The primary batteries are not rechargeable, however, the secondary batteries are.
Ques. What are Dry Cells and How do they work? (3 marks)
Ans. A dry cell is an electrochemical cell with a paste as the electrolyte. The electrolytes in such cells just have enough moisture to allow current to flow. As a result, these cells can be used in a variety of positions without danger of spillage. Because they do not contain any free liquid, dry cells are commonly employed in portable electronic gadgets.
Ques. Define Wet Cell Battery. (3 marks)
Ans. An electric battery with liquid electrolytes is known as a wet cell battery. Vented cells and flooded cells are other names for it. Many electrochemistry labs are known to employ them as learning aids. It's worth noting that electrolytes in the liquid form can be used to build both primary and secondary cells. As a result, a wet cell does not have to be the main cell.
Ques. Is a battery alternating current (AC) or direct current (DC)? (2 marks)
Ans. Direct current is used by all batteries, including lithium-ion batteries that power everything from electric vehicles to drones to laptops (DC). AC or alternating current, power sources are used by the vast majority of appliances.
Ques. What are the primary parts of a battery? What is the battery’s unit of measurement? (3 marks)
Ans. There are four components inside every battery:
- Two electrodes (anode and cathode),
- A separator (to prevent shorting),
- An electrolyte (to move charges between the electrodes).
The amount of energy stored in a battery is expressed in watt-hours (Wh), kilowatt-hours (kWh), or ampere-hours (Ahr).
Ques. In the case of an Ideal case, what would be the Charging current for a 200Ah battery? (2 marks)
Ans. The Charging current is considered to be 10% of the Ah (Ampere hour) rating of the battery.
Which means, Charging current for 120Ah battery is going to be = 200Ah x (10/100) = 20A
Ques. A commercial lead acid cell is known to have 13 plates. In it, what is the number of positive plates? (1 mark)
Ans. The negative plates that can be found in a lead acid cell are one more than the number of positive plates, given that the outside plates are negative. This means the number of positive plates is going to be 6.
Ques. Give one key benefit and one major drawback of a lead storage battery. (2 marks)
Ans. Advantages: It is affordable, has a high power density (vehicle starter motor and lights), has a long shelf life, and is easily recharged, resulting in a longer operating life of many years.
Disadvantages: Lead must be recycled to minimize contamination of the environment, and during charging, it can produce hydrogen gas at the cathode, which might catch fire.
Ques. What exactly do you mean when you say "dry cell corrosion"? (1 mark)
Ans. The exterior Zinc casing of a dry cell develops pits because ammonium chloride, an acidic salt, reacts with the metal to create salt, creating pits. Dry cell corrosion is the term for this.
Ques. What are the advantages of fuel cells over traditional batteries? (3 marks)
Ans. 1) High efficiency
Fuel cells transform the energy of a fuel directly into electricity, making them more efficient than traditional large-scale electricity generation methods such as burning hydrogen or carbon fuels. The combustion of a fuel to generate heat, which is then used to make electricity, is the traditional technique of producing electrical energy. The effectiveness of these methods is only around 40%.
2) Continuous source of energy
Unlike a regular battery, there is no electrode material to replace. To generate electricity, the fuel can be fed continually.
(3) Pollution-free working
Because there are no undesirable by-products, they do not contribute to pollution.
Ques. Is it true that dry cells are dry? (2 mark)
Ans. The dry cells, in truth, aren't completely dry. They have an NH4Cl and ZnCl2 wet paste. In reality, a dry cell can only function if the paste inside it is moist. Furthermore, a dry cell cannot be recharged. As a result, dry cells do not have an infinite lifespan. This is due to the acidic nature of the NH4Cl paste, which continues to corrode the zinc container even while it is not in use..
Ques. What are the standard conditions for a Standard open circuit voltage for a Lead-acid battery? (5 marks)
Ans. The net voltage or voltage difference that can be found between the potentials of the positive and negative electrodes of an electrolyte cell explains the open circuit voltage at standard conditions.
In the case of the discharge of a battery, the negative electrode experiences oxidation and the positive electrode experiences reduction. Thus:

Thus, open circuit voltage at standard conditions:
⇒ Vo = Eo1-E02
= +1.690 – (-0.358) Volts
= +2.048 Volts
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