Field effect transistor air-gap spacers with an etch-stop layer
Provided herewith are embodiments related to a semiconductor structure and a method for forming the semiconductor structure. A first spacer layer and a second spacer layer are formed opposite a major surface of a substrate. The second spacer layer is removed using the first spacer layer as a stop layer. The removal of the second spacer layer forms an air-gap spacer in an area previously occupied by the second spacer layer.
1. A semiconductor structure, comprising:
a first spacer layer opposite a major surface of a substrate; and
a second spacer layer on an opposite side of the first spacer layer from the major surface of the substrate, wherein opposite sidewalls associated with the first spacer layer are coplanar to sidewalls associated with the second spacer layer at an interface between the first spacer layer and the second spacer layer;
wherein the second spacer layer is removed using the first spacer layer as an etch-stop layer, in which the removal of the second spacer layer forms an air-gap spacer in an area previously occupied by the second spacer layer; and
wherein the first spacer layer is comprised of a first dielectric material and the second spacer layer is comprised of a second dielectric material, the second dielectric material having an etch selectivity relative to the first dielectric material.
2. The semiconductor structure of claim 1 , wherein the second dielectric material has a lower dielectric constant than the first dielectric material.
3. The semiconductor structure of claim 1 , wherein the air-gap spacer has a lower dielectric than the second dielectric material.
4. The semiconductor structure of claim 1 , wherein an etching process is used to remove the second spacer layer.
5. The semiconductor structure of claim 1 , wherein the semiconductor structure is a FinFET.
6. The semiconductor structure of claim 1 further comprising:
a capping layer;
one or more contacts;
a contact cap; and
a gate.
7. The semiconductor structure of claim 6 , wherein the air-gap spacer is bounded by the one or more contacts, the gate and the contact cap.
8. The semiconductor structure of claim 6 , wherein a height of the first spacer layer is lower than a height of the gate.
9. The semiconductor structure of claim 6 , wherein the gate is flush with the one or more contacts.
10. The semiconductor structure of claim 6 , wherein the gate is comprised of tungsten.
11. The semiconductor structure of claim 6 further comprising a work function metal formed on a portion of the gate opposing the contact cap.
12. The semiconductor structure of claim 11 further comprising a dielectric layer formed between the work function metal and the substrate.
13. The semiconductor structure of claim 6 , wherein the one or more contacts are trench silicide contacts.
14. The semiconductor structure of claim 6 , wherein the capping layer is formed from a dielectric material.
15. The semiconductor structure of claim 1 , wherein first spacer layer is formed in a shallow trench isolation (STI) structure.
16. The semiconductor structure of claim 1 , wherein first spacer layer is comprised of: silicon oxide, silicon oxynitride, or a combination of silicon oxide and silicon oxynitride.
17. The semiconductor structure of claim 1 further comprising a liner formed between the first spacer layer and the major surface of a substrate.
18. The semiconductor structure of claim 17 , wherein the liner is comprised of a dielectric material.