Valence electrons in insulators

So it takes too much energy to reach the conduction band. In summary, the valence electrons in insulators are not free to move due to the full band and it requires a significant amount of energy to reach the conduction band.
  • #1
Superposed_Cat
388
5
I was wondering why the valence electrons aren't free to move in insulators? Thanks for any help in advance.
 
Physics news on Phys.org
  • #4
Superposed_Cat said:
I was wondering why the valence electrons aren't free to move in insulators? Thanks for any help in advance.
In fact they move with their group velocities but since the band is full, movement of the electron at k would neutralize the movement of another one at -k.
 

1. What are valence electrons?

Valence electrons are the electrons located in the outermost energy level of an atom. They determine the chemical and physical properties of an element and are involved in the formation of chemical bonds.

2. How do valence electrons differ in insulators compared to conductors?

In insulators, valence electrons are tightly bound to their respective atoms and are not able to move freely, resulting in poor conductivity. In contrast, in conductors, valence electrons are able to move easily between atoms, allowing for better conductivity.

3. How many valence electrons do insulators typically have?

Insulators usually have a full valence shell of electrons, meaning they have 8 valence electrons (except for helium, which has 2 valence electrons).

4. Why do insulators not conduct electricity well?

Insulators do not conduct electricity well because their valence electrons are tightly bound to their atoms, making it difficult for them to move and carry an electric charge.

5. Can insulators become conductors under certain conditions?

Yes, insulators can become conductors if they are exposed to high temperatures or undergo a process called doping, where impurities are added to the material to free up some of the valence electrons and allow for better conductivity.

Similar threads

  • Atomic and Condensed Matter
Replies
2
Views
785
  • Atomic and Condensed Matter
Replies
11
Views
3K
  • Atomic and Condensed Matter
Replies
4
Views
1K
  • Atomic and Condensed Matter
Replies
3
Views
1K
  • Atomic and Condensed Matter
Replies
5
Views
1K
  • Atomic and Condensed Matter
Replies
7
Views
1K
  • Atomic and Condensed Matter
Replies
2
Views
2K
Replies
1
Views
1K
  • Atomic and Condensed Matter
Replies
4
Views
1K
  • Atomic and Condensed Matter
Replies
1
Views
2K
Back
Top