Some things help clean our world. 
Some things help clean our world. 

Even our bodies use it. Special white blood cells make it. 
Hypochlorite is a special part of a chemical. 
These salts work as cleaners. They are used for bleaching and disinfection. This means they kill germs and remove stains. They can even whiten clothes or lighten hair. A chemist named Claude Berthollet found these traits in 1785.
Our bodies use hypochlorite too. White blood cells make small amounts of it. 

Most hypochlorite salts are not very stable. This means they can change easily. If you add acid, it lets out chlorine gas. This gas can be dangerous. If you heat them, they can even explode. This is why we often use them as liquids in water.
Hypochlorite is a special part of a chemical called an oxyanion. 

These chemicals work through a thing called oxidation. Oxidation is a way that one substance can change another. Hypochlorite is a very strong oxidizing agent. It can change things like manganese or primary alcohols. This power is why it works so well to remove stains. It can also kill germs by breaking them down. In a lab, it can even turn phenols into chlorophenols. This makes it a useful tool for many different jobs.
People discovered these useful traits a long time ago. A French chemist named Claude Berthollet found bleaching properties in 1785. Later, around 1820, another French chemist named Labarraque found they could disinfect. This was even before the famous scientist Pasteur explained how germs work. Since then, we have learned how to make them in big ways. We can make them by reacting chlorine with metal hydroxides. We can also use electricity to make sodium hypochlorite from brine.
Most hypochlorite salts are not very stable. This means they can change into something else quite easily. Many of them only stay as they are when mixed in water. If you heat them up, they can break down. This can release oxygen and chloride. In some cases, this heat can cause a dangerous explosion. Adding acid is also risky. It can turn the salt into chlorine gas, which is dangerous. 
Your own body actually uses hypochlorite to stay healthy. When you get an infection, your white blood cells jump into action. These cells are called neutrophil granulocytes. They swallow up tiny viruses and bacteria. Inside the cell, they use a special reaction to make small amounts of hypochlorite. This helps to digest the germs. It can even make bacteria clump together so they die. 

Hypochlorite is a chemical substance known as an oxyanion. 
To understand how hypochlorite works, you must understand oxidation. Hypochlorite is a very strong oxidizing agent. Oxidation is a chemical process where one substance changes another by taking electrons. In a laboratory setting, this power allows it to convert manganese from a +3 state to a +5 state. It can also oxidize primary alcohols into carboxylic acids. This ability to change the chemical structure of other molecules is why it removes stains. It can also act as a chlorinating agent. For example, it can turn phenols into chlorophenols or piperidine into N-chloropiperidine. 
There are different types of chlorine-based oxyanions. These are grouped by how many oxygen atoms are attached to the chlorine nucleus. The series begins with the chloride ion, which has a -1 oxidation state. Next is the hypochlorite ion, which has a +1 oxidation state. This is followed by chlorite, chlorate, and finally perchlorate. Perchlorate has the highest number of oxygens and a +7 oxidation state. 
History shows us how these chemicals were first understood. In 1785, a French chemist named Claude Berthollet discovered their bleaching properties. This was a major step in the history of cleaning products. Later, around 1820, another French chemist named Labarraque discovered they could be used as disinfectants. This discovery was quite remarkable because it happened before Louis Pasteur formulated his germ theory of disease. These early discoveries paved the way for the massive industrial production we see today. We now use these chemicals to keep water safe and clothes bright.
Creating hypochlorite salts requires specific chemical reactions. One common method involves reacting chlorine with the hydroxides of alkali or alkaline earth metals. This reaction must be kept close to room temperature. If it gets too hot, it might form chlorates instead of hypochlorite. 
Stability is a major concern when handling hypochlorite. Most hypochlorite salts are unstable and are best kept as aqueous solutions. This means they are dissolved in water. The more a substance is diluted, the more stable it becomes. Some pure, solid forms exist, such as lithium hypochlorite and calcium hypochlorite. However, sodium hypochlorite is explosive if it is an anhydrous solid. 
Interestingly, your body uses hypochlorite as a natural defense system. When you are infected, your white blood cells called neutrophil granulocytes respond. These cells swallow up bacteria and viruses into a small space called a phagosome. Inside, the cell performs a "respiratory burst" to create reactive oxygen compounds. An enzyme called myeloperoxidase then converts chloride into hypochlorite. This small amount of hypochlorite helps digest the invading germs. It can even cause bacteria to clump together until they die. This shows how a powerful chemical tool is used by biology to protect life.
🖼️ Images & Media (6)
More to explore
✨ What else?
Related topics you might enjoy
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.