Vertical transistor fabrication for memory applications
The present disclosure provides methods for forming a channel structure in a film stack for manufacturing three dimensional (3D) stacked memory cell semiconductor devices. In one embodiment, a memory cell device includes a film stack comprising alternating pairs of dielectric layers and conductive structures horizontally formed on a substrate, and a channel structure formed in the film stack, wherein the channel structure is filled with a channel layer and a protective blocking layer, wherein the channel layer has a gradient dopant concentration along a vertical stacking of the film stack.
1. A memory cell device, comprising:
a film stack comprising alternating pairs of dielectric layers and conductive structures horizontally formed on a substrate; and
a channel structure formed in the film stack, the channel structure comprising:
a channel layer comprising a semiconductor material, the channel layer having a gradient dopant concentration and a gradual change in thickness along a vertical stacking of the film stack;
a first dielectric layer in contact with the channel layer, the first dielectric layer comprising an oxide;
a second dielectric layer in contact with the first dielectric layer, the second dielectric layer comprising a nitride; and
a protective blocking layer formed on the substrate and disposed between the film stack and the second dielectric layer, the protective blocking layer comprising an oxide and having a first thickness at a bottom portion of the protective blocking layer less than a second thickness at a top portion of the protective blocking layer, wherein the first dielectric layer, the second dielectric layer, and the protective blocking layer extend around a bottom portion of the channel layer from a first sidewall of the channel layer to a second sidewall of the channel layer.
2. The memory cell device of claim 1 , wherein the first thickness is between about 5% and about 80% less than the second thickness.
3. The memory cell device of claim 1 , wherein the channel layer has a first dopant concentration at a bottom portion of the channel layer greater than a second dopant concentration at a top portion of the channel layer.
4. The memory cell device of claim 3 , wherein the first dopant concentration is between about 200% and about 400% greater than the second dopant concentration.
5. The memory cell device of claim 1 , wherein the channel layer is a doped silicon containing layer, group III-V material, IGZO or gallium oxide material.
6. The memory cell device of claim 1 , wherein the protective blocking layer is a dielectric layer.
7. The memory cell device of claim 1 , wherein the channel layer is a doped polysilicon layer and the protective blocking layer is at least one of SiO 2 , SiON, SiCON, or SiOC.