Dielectric/metal barrier integration to prevent copper diffusion
An interconnect structure for use in semiconductor devices and a method for fabricating the same is described. The method includes positioning a substrate in a vacuum processing chamber. The substrate has an exposed copper surface and an exposed low-k dielectric surface. A metal layer is formed over the copper surface but not over the low-k dielectric surface. A metal-based dielectric layer is formed over the metal layer and the low-k dielectric layer.
1. A method for forming an interconnect structure, the method comprising:
positioning a substrate in a vacuum processing chamber, wherein the substrate comprises a copper layer having an exposed surface and a low-k dielectric layer having an exposed surface;
forming a metal layer over the exposed copper surface but not over the exposed dielectric surface, wherein the metal layer comprises cobalt, cobalt tungsten phosphide, cobalt tungsten nitride, or cobalt tungsten phosphonitride, wherein the metal layer has a thickness of about 17 Å to about 50 Å, and wherein the metal-based dielectric layer is formed by physical vapor deposition;
forming a metal-based dielectric layer over the exposed dielectric surface and the metal layer, wherein:
the metal-based dielectric layer comprises aluminum oxide, aluminum nitride, or aluminum oxynitride
wherein the metal-based dielectric layer has a thickness of about 10 Å to about 100 Å; and
wherein the metal layer and the metal-based dielectric layer are formed without an airbreak;
forming a second low-k dielectric layer directly over the metal-based dielectric layer;
forming a trench in the second low-k dielectric layer; and
filling the trench at least partially with copper.