This is a dark green liquid. 

Some liquids are a dark green color. 

Manganates are special parts of matter. They have a metal called manganese at their center. 

Manganates have a shape called a tetrahedron. This means they look like a four-sided pyramid. Their shape is like other things called sulfates or chromates. Scientists first saw this in 1831.
People make these in a lab. They stir certain things in a strong liquid. They might do this for 24 hours. They may also use heat to help. In big factories, they use heat and air to make potassium manganate.
Manganates can help change other things. We call them oxidizing agents. This means they help turn one thing into another. For example, they can turn alcohols into acids. Some types, like barium manganate, do not dissolve in water. This makes them useful for science work. They are not always stable. In most liquids, they break apart into other things. They only stay steady in very strong alkaline liquids.
Manganates are special parts of matter. They have a metal called manganese at their center. 

This type of manganate has a very specific shape. It is a tetrahedron. A tetrahedron looks like a pyramid with four sides. This shape is very similar to things called sulfates or chromates. 
People have studied these shapes for a long time. A scientist named Eilhard Mitscherlich first noted this shape in 1831. He saw how they were like other common structures. 
Making manganates is a careful job. In a lab, people stir permanganate in a strong liquid. They might do this for 24 hours. They might use heat to help the process. 
Manganates can be used to change other substances. We call them oxidizing agents. This means they help turn one chemical into another. 
In the field of inorganic nomenclature, a manganate is a negatively charged molecular entity. It features manganese as its central atom. 
The structure of the manganate(VI) ion is a tetrahedron. This means it forms a shape like a pyramid with four triangular sides. 
Scientists have identified several different types of manganate ions. These are distinguished by their oxidation states. There is hypomanganate, also known as manganate(V). There is also permanganate, which is manganate(VII). Another type is the dimanganate(III) ion. Scientists have even prepared a manganate(IV) anion. They did this through the radiolysis of dilute permanganate solutions. 
Research into these structures began in the early 19th century. In 1831, the scientist Eilhard Mitscherlich noted that manganates share structures with sulfates and chromates. This discovery helped chemists understand how different elements can form similar shapes. Since then, scientists have used advanced tools like Raman spectroscopy to study them. They have also used pulse radiolysis techniques to estimate chemical constants. For example, they estimated the second acid dissociation constant for the hypothetical manganic acid. This constant, known as pKa, is 7.4 ± 0.1.
Manganates are often prepared through specific chemical processes. In a laboratory, scientists can make sodium and potassium manganates. They do this by stirring permanganate in a concentrated solution of hydroxide. This solution is usually 5–10 M. The stirring process can take 24 hours or involve heating. 
These compounds are very useful as oxidizing agents in organic synthesis. An oxidizing agent is a substance that causes other chemicals to lose electrons. 
Despite their uses, manganates are not always stable. They are prone to a process called disproportionation. This happens when a single substance breaks down into different products. This occurs in all aqueous solutions unless they are very alkaline. The ultimate products of this breakdown are permanganate and manganese dioxide. The exact mechanism is complex. It may involve species that are protonated or involve manganese(V). Finally, the term "manganite" is sometimes used for related compounds. These were once thought to contain the Mn(III) anion. However, most are actually mixed oxides with structures like perovskite, spinel, or sodium chloride.
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