Tellurium is a rare metal. 
Tellurium is a rare metal. 

We use it to make solar panels. These panels catch light from the sun. 
This metal is very brittle. That means it breaks easily. It can also be a black powder.
Finding it is hard. Most of it comes from making copper.
It is a very special metal. Do you like the sun?
Tellurium is a rare, silver-white metal. 

Scientists first found tellurium in a gold mine in 1782. 
We use tellurium for many important things. It is used in solar panels. 
Tellurium is a rare and interesting chemical element. 


Finding tellurium is a special process. It is rarely found alone as pure crystals. Instead, it is usually pulled out as a by-product while making copper and lead. 
Humans first discovered tellurium in a gold mine in 1782. 
Tellurium is used in many high-tech ways today. One major use is in CdTe solar panels. 
Even though it is a tiny part of our world, tellurium connects to big things. It is found in gold minerals like sylvanite. In the 1890s, miners in Australia even used old telluride rocks to build sidewalks. You can also find tellurium in space. In 2023, astronomers saw tellurium being created when two neutron stars crashed together.
Tellurium is a rare and fascinating chemical element with the symbol Te and atomic number 52. 

The scarcity of tellurium on Earth is likely due to the way our planet formed. During the hot nebular formation of Earth, tellurium formed a volatile hydride. This hydride is a gas that allowed the tellurium to escape into space. This process is similar to what happened to selenium, another heavy element. Scientists believe these elements were depleted during preaccretional sorting in the solar nebula. In the cosmos, however, tellurium is actually more common than the element rubidium. This highlights the difference between how much of an element exists in space versus how much remains on Earth.
Tellurium can exist in two different physical forms, known as allotropes. The crystalline form is silvery-white and has a metallic luster. These crystals are trigonal and chiral, meaning they have a specific spatial structure. The atoms in crystalline tellurium are arranged in parallel helical chains. There are three atoms per turn in these chains. The second form is amorphous tellurium, which is a black-brown powder. This powder is created by precipitating tellurium from a solution of tellurous acid or telluric acid. 
The history of tellurium involves many years of scientific investigation. In 1782, Franz-Joseph Müller von Reichenstein discovered tellurium-bearing compounds in a gold mine in Transylvania. At first, he was confused by the metal's strange properties. He called it "aurum paradoxum" or "problem metal" because it did not behave like antimony. It was not until 1798 that Martin Heinrich Klaproth named the element. He derived the name from the Latin word "tellus," which means earth. 
Most tellurium is not mined directly but is recovered as a by-product. It is often extracted during the production of copper and lead. For example, it is found in anode sludges during the electrolytic refining of blister copper. To extract it, the sludge is roasted at 500 degrees Celsius with sodium carbonate. This process converts the telluride into sodium tellurite. This substance can then be leached with water. Finally, the tellurium is produced from tellurium dioxide through electrolysis or by reacting it with sulfur dioxide. 
Today, tellurium is essential for several high-tech industries. Its primary commercial use is in Cadmium Telluride (CdTe) solar panels. 
Tellurium also has interesting connections to biology and space. While it has no biological function in humans, some fungi can use it in amino acids. In humans, exposure can lead to the production of dimethyl telluride, a gas that causes a garlic-like odor on the breath. On a much larger scale, tellurium is created in the universe during massive cosmic events. In 2023, astronomers detected tellurium being created during a neutron star merger.
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