IP Library › Granted Patent US 12,382,674
Granted Patent B2
US 12,382,674 · App. 17/827,542 · Granted Aug 5, 2025

Dual metal via for contact resistance reduction

Inventors: Chung-Liang Cheng (Changhua County, TW); Yen-Yu Chen (Taichung, TW)
Assignee: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD
H10D62/021H01L21/28518H01L21/76224H01L21/76843H01L21/76855H10D30/024H10D30/6211H10D30/6212H10D62/116H10D64/015H10D64/514
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Quick Facts
Patent No.
US 12,382,674
App. No.
17/827,542
Granted
Aug 5, 2025
Kind
B2
Abstract

A semiconductor device includes a first cobalt-containing plug disposed over a substrate, a second cobalt-containing plug disposed over the first cobalt-containing plug, a first barrier layer over sidewalls of the second cobalt-containing plug, a second barrier layer over sidewalls of the first barrier layer, and a dielectric layer surrounding the second barrier layer. The first barrier layer contains a metal element. The first and second barrier layers include different material compositions.

Claims (39)

1. A semiconductor device, comprising:

a first cobalt-containing plug disposed over a substrate;

a second cobalt-containing plug disposed over the first cobalt-containing plug with a discernable interface between and separating the first and second cobalt-containing plugs;

a first barrier layer over sidewalls of the second cobalt-containing plug, wherein the first barrier layer contains a metal element;

a second barrier layer over sidewalls of the first barrier layer, wherein the first and second barrier layers include different material compositions; and

a dielectric layer surrounding the second barrier layer.

2. The semiconductor device of claim 1 , wherein the first barrier layer contains titanium or tantalum.

3. The semiconductor device of claim 1 , wherein the second barrier layer contains silicon.

4. The semiconductor device of claim 1 , further comprising:

a conductive cap disposed over and in physical contact with the first cobalt-containing plug.

5. The semiconductor device of claim 1 , wherein a bottom surface of the second cobalt-containing plug is spaced apart from a top surface of the first cobalt-containing plug.

6. The semiconductor device of claim 1 , wherein a total thickness of the first and second barrier layers is greater than a depth of diffusion by cobalt elements from the second cobalt-containing plug into the first and second barrier layers.

7. The semiconductor device of claim 1 , further comprising:

a contact etch stop layer disposed over a lower portion of sidewalls of the second barrier layer.

8. A semiconductor device, comprising:

a conductive feature over a substrate;

a ruthenium-containing feature disposed over the conductive feature;

a first barrier layer disposed over the conductive feature and over sidewalls of the ruthenium-containing feature, wherein the first barrier layer physically contacts the ruthenium-containing feature; and

a second barrier layer disposed over sidewalls of the first barrier layer, wherein the first barrier layer interposes the conductive feature and the ruthenium-containing feature and separates the conductive feature from physically contacting the ruthenium-containing feature, wherein the first and second barrier layers include different material compositions.

9. The semiconductor device of claim 8 , further comprising:

a third barrier layer disposed over sidewalls of the second barrier layer, wherein the third barrier layer interposes the conductive feature and the second barrier layer and separates the conductive feature from physically contacting the second barrier layer.

10. The semiconductor device of claim 9 , wherein the third barrier layer is in physical contact with the first barrier layer.

11. The semiconductor device of claim 9 , wherein the first, second, and third barrier layers include different material compositions.

12. The semiconductor device of claim 9 , wherein the second barrier layer and the third barrier layer have about a same thickness.

13. The semiconductor device of claim 8 , wherein each of the first barrier layer and second barrier layer includes titanium nitride or tantalum nitride.

14. The semiconductor device of claim 8 , further comprising:

a contact etch stop layer disposed over the sidewalls of the ruthenium-containing feature, wherein the conductive feature is at least partially embedded in the contact etch stop layer.

15. A semiconductor device, comprising:

a conductive feature disposed over a substrate;

a ruthenium-containing plug disposed over and in electrical coupling with the conductive feature;

a dielectric layer disposed over the conductive feature and surrounding the ruthenium-containing plug;

a first barrier layer disposed on sidewalls of the ruthenium-containing plug, wherein the first barrier layer includes a metal nitride; and

a second barrier layer disposed between the first barrier layer and the dielectric layer, wherein the second barrier layer includes a semiconductor nitride, wherein a bottom surface of the second barrier layer is above a top surface of the conductive feature.

16. The semiconductor device of claim 15 , wherein the metal nitride is titanium nitride or tantalum nitride.

17. The semiconductor device of claim 15 , wherein the semiconductor nitride is silicon nitride.

18. The semiconductor device of claim 15 , wherein the first barrier layer is disposed on a bottom surface of the ruthenium-containing plug and separates the ruthenium-containing plug from contacting the conductive feature.

19. The semiconductor device of claim 15 , further comprising:

a third barrier layer disposed between the first barrier layer and the second barrier layer, wherein the third barrier layer includes a metal element other than ruthenium.

20. The semiconductor device of claim 19 , wherein a total thickness of the second barrier layer and the third barrier layer ranges from about 2 nm to about 3 nm.

Continuity (3)
Continuation 16870360 · May 8, 2020
Continuation 15898706 · Feb 19, 2018
Related Publication 20220293770A1 · Sep 15, 2022
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