Middle layer composition for trilayer patterning stack
View Patent ↗Methods and materials for making a semiconductor device are described. The method includes forming a middle layer (ML) of a patterning stack (e.g., a tri-layer patterning stack such as a tri-layer resist) and forming a photoresist layer directly on the middle layer. The middle layer includes an additive component having a photo base generator (PBG). The substrate including the photoresist layer and the middle layer is then exposed to a radiation. A covalent bond between the ML and the photoresist layer may be formed.
1. A method of making a semiconductor device, the method comprising:
forming a middle layer (ML) comprising a photo base generator over a substrate, wherein the ML includes an additive component, the additive component including a photo base generator (PBG);
forming a photoresist layer over the middle layer;
providing a radiation beam incident the photoresist layer, wherein the radiation beam generates an acid component in the photoresist layer and a base component from the PBG in the middle layer;
quenching the generated acid component in the photoresist layer with a first amount of the base component generated;
baking the substrate after providing the radiation beam; and
after initiating the baking, reacting a second amount of the base component generated in the middle layer wherein the reacting forms covalent bonds between the second amount of the base component in the middle layer and a component of the photoresist layer.
2. The method of claim 1 , wherein the acid component is an acid labile group.
3. The method of claim 1 , wherein the base component is one of an amine and a sulfur ion (S—).
4. The method of claim 1 , wherein the covalent bond occurs only at the interface between an exposed region of the photoresist layer and the middle layer.
5. A method of making a semiconductor device, the method comprising:
providing a semiconductor substrate;
forming an underlying layer of a patterning stack on the semiconductor substrate, wherein the underlying layer includes an organic polymer;
forming a middle layer (ML) of the patterning stack on the semiconductor substrate, wherein the middle layer includes an additive component having a photo base generator (PBG);
forming a photoresist layer (PR) of the patterning stack directly on the middle layer; and
exposing the semiconductor substrate to a radiation beam, wherein the exposing produces a sulfur ion (S—) from the PBG; and
after initiating a baking process, covalently bonding the sulfur of the sulfur ion to a component of the PR.
6. The method of claim 5 , wherein an upper surface of the ML contains a higher concentration of the additive component having the photo base generator than a lower region of the ML.
7. The method of claim 5 , further comprising:
adding a photo acid generator (PAG) to the PR layer; and
after exposure, using the base generated by the photo base generator to quench an acid generated by the PAG.