This is a special battery. 
These batteries are very special. 

A lithium polymer battery is a type of rechargeable battery. Most lithium batteries use a liquid inside to work. These batteries use a polymer electrolyte instead. A polymer is a material that can be solid or a gel. 
There are two main kinds of these electrolytes. The first kind is a dry solid polymer electrolyte. This is a solid material with salts mixed in. The second kind is a gel polymer electrolyte. This uses a liquid mixed into the polymer. 
These batteries have many great uses. They can be made in almost any shape. This makes them perfect for thin tools like tablets. They are also very light. This helps drones and remote-controlled planes fly well. 
Sometimes, these batteries can swell up or expand. This happens if they are overcharged. Because they have a soft case, they can look inflated. It is important to use them safely.
A lithium polymer battery, often called a LiPo, is a special kind of rechargeable battery. It belongs to the lithium-ion family, but it works in a different way. Most lithium batteries use a liquid to move energy around. LiPo batteries use a polymer electrolyte instead. A polymer is a material that can be a solid or a gel. 
To understand how it works, think about how energy moves inside. A battery has a positive electrode and a negative electrode. These parts do not touch each other. Instead, a separator sits between them to keep them apart. 

Scientists have been working on these batteries for a long time. Michel Armand used a dry solid polymer in a prototype around 1978. Later, in 1985, groups in France and Canada also worked with them. In 1988, the company Sony began researching gelled polymer electrolytes. 
There are many important facts about how these cells perform. A single cell usually has a voltage of about 3.6 or 3.7 volts. When it is fully charged, the voltage can reach about 4.2 volts. When it is empty, the voltage drops to between 2.7 and 3.0 volts. 
You can find LiPo batteries in many things you use every day. They are in smartphones, tablets, and thin laptop computers. Because they can be made in almost any shape, they fit well in small devices. 
A lithium polymer battery, often abbreviated as LiPo, is a type of rechargeable battery. It is a variation of lithium-ion and lithium-metal technology. The defining feature of a LiPo is its electrolyte. While standard lithium-ion cells use a liquid lithium salt dissolved in an organic solvent, LiPo cells use a polymer electrolyte. This electrolyte can be a solid or a semi-solid material. Common examples include polyethylene glycol (PEG) or poly(methyl methacrylate) (PMMA). 
The working principle of a LiPo cell relies on the movement of lithium ions. This process is known as intercalation and de-intercalation. During operation, lithium ions move between a positive electrode and a negative electrode. To keep the battery safe, a microporous polymer separator sits between these electrodes. This separator prevents the electrodes from touching while still allowing ions to pass through. The electrolyte acts as the conductive medium for this movement. 
Polymer electrolytes are categorized into two main types. The first is the dry solid polymer electrolyte (SPE). In an SPE, lithium salts are dissolved directly into a polymer matrix. However, SPEs often have poor conductivity at room temperature because ion transfer is difficult. To solve this, scientists developed gel polymer electrolytes (GPE). A GPE incorporates an organic liquid electrolyte into the polymer matrix. This creates a hybrid system that behaves like a mix of a solid and a liquid. 
The history of this technology spans several decades of research. Michel Armand developed the first dry SPE prototype around 1978. In 1985, organizations in France and Canada also worked on these prototypes. By 1988, Sony began researching cells that used gelled polymer electrolytes. 
Understanding the electrical specifications of these cells is vital for safety. A single LiPo cell has a voltage that changes based on its charge. For cells using lithium-metal-oxides, the nominal voltage is typically 3.6 or 3.7 volts. A fully charged cell reaches about 4.2 volts. When the cell is fully discharged, the voltage drops to between 2.7 and 3.0 volts. 
LiPo batteries are widely used because of their high energy density and light weight. They are common in radio-controlled aircraft, drones, and model trains. 

Safety is a major consideration when using LiPo technology. Because they lack a rigid metal case, they use a flexible polymer laminate case. This means they can visibly expand or inflate if they are overcharged. 
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