Oxide semiconductor devices, methods of forming oxide semiconductor devices and organic light emitting display devices including oxide semiconductor devices
An oxide semiconductor device includes a first insulation layer pattern and a second insulation layer pattern disposed on a substrate, an active layer disposed on the first and second insulation layer patterns, the active layer including a source region including the first insulation layer pattern, a drain region including the second insulation layer pattern, and a channel region disposed between the source and drain regions, a source electrode contacting the source region, and a drain electrode contacting the drain region.
1. An oxide semiconductor device, comprising:
a substrate;
a first insulation layer pattern and a second insulation layer pattern disposed on the substrate;
an active layer disposed on the first insulation pattern and the second insulation layer pattern, the active layer comprising a source region comprising the first insulation layer pattern, a drain region comprising the second insulation layer pattern, and a channel region disposed between the source region and the drain region wherein the source region and the drain region comprise impurities diffused from the first insulation layer pattern and the second insulation layer pattern, respectively;
a source electrode contacting the source region; and
a drain electrode contacting the drain region.
2. The oxide semiconductor device of claim 1 , wherein the impurities comprise hydrogen or fluorine.
3. The oxide semiconductor device of claim 2 , wherein each of the first and second insulation layer patterns comprises at least one of silicon oxyfluoride (SiO x F y ), silicon hydroxide (Si(OH) x ), silicon nitride (SiN x ), silicon oxynitride (SiO x N y ), and silicon fluoronitride (SiF y N x ).
4. The oxide semiconductor device of claim 2 , wherein the active layer comprises at least one of indium (In), zinc (Zn), gallium (Ga), tin (Sn), titanium (Ti), aluminum (Al), hafnium (Hf), zirconium (Zr), and magnesium (Mg).
5. The oxide semiconductor device of claim 1 , wherein a length of the channel region varies according to impurity content of the source and drain regions.
6. The oxide semiconductor device of claim 1 , further comprising a gate insulation layer disposed on the active layer, a gate electrode disposed on the gate insulation layer, and an insulating interlayer disposed on the gate insulation layer and the gate electrode.
7. The oxide semiconductor device of claim 6 , wherein the source electrode and the drain electrode pass through the insulating interlayer and the gate insulation layer and contact the source region and the drain region, respectively.
8. The oxide semiconductor device of claim 1 , further comprising:
a gate electrode disposed on the substrate; and
a gate insulation layer disposed on the gate electrode and the substrate,
wherein the first and second insulation layer patterns are disposed on the gate insulation layer.
9. The oxide semiconductor device of claim 8 , wherein:
the source electrode contacts portions of the first insulation layer pattern and the source region; and
the drain electrode contacts portions of the second insulation layer pattern and the drain region.
10. The oxide semiconductor device of claim 8 , wherein the gate electrode does not overlap the source and drain electrodes.
11. The oxide semiconductor device of claim 8 , further comprising an etch stop layer disposed on the active layer.