Semiconductor device including a transistor having a metal-rich metal oxide layer
A semiconductor device includes a gate dielectric layer over a substrate; a lower gate barrier layer over the gate dielectric layer; and a lower gate electrode over the lower gate barrier layer. The lower gate electrode includes at least one metal-rich metal oxide layer.
1 . A semiconductor device comprising:
a gate dielectric layer over a substrate;
a lower gate barrier layer over the gate dielectric layer; and
a lower gate electrode over the lower gate barrier layer,
wherein the lower gate electrode includes a multi-layered structure in which a plurality of metal-rich metal oxide layers has oxygen vacancy concentrations different from each other,
wherein the at least one of the plurality of metal-rich metal oxide layers has a higher metal mass ratio and a higher oxygen vacancy concentration than a metal oxide according to the Law of Definite Proportions to enhance a work function of the lower gate electrode, and
wherein the metal mass ratio is defined as a mass ratio of metal ions that are not bonded to oxygen due to an oxygen vacancy.
2 . The semiconductor device of claim 1 , wherein the multi-layered structure further includes a plurality of metal layers alternately interposed with the plurality of metal-rich metal oxide layers.
3 . The semiconductor device of claim 2 , wherein the at least one of the plurality of metal-rich metal oxide layers and the metal layers include a same metal.
4 . The semiconductor device of claim 3 , wherein the metal layers include molybdenum.
5 . The semiconductor device of claim 1 , wherein the at least one of the plurality of metal-rich metal oxide layers includes molybdenum oxide.
6 . The semiconductor device of claim 1 , further comprising:
an upper gate barrier layer formed over the lower gate electrode.
7 . The semiconductor device of claim 6 , further comprising:
an upper gate electrode formed over the upper gate barrier layer.
8 . The semiconductor device of claim 7 , wherein the upper gate electrode includes tungsten.
9 . The semiconductor device of claim 1 , further comprising:
an interface insulating layer formed between the substrate and the gate dielectric layer.
10 . The semiconductor device of claim 1 , wherein the lower gate barrier layer includes at least one of Ti, TiN, Ti/TIN, Ta, TaN, Ta/TaN, WN, and conductive barrier materials.
11 . The semiconductor device of claim 1 , wherein the at least one of the plurality of metal-rich metal oxide layers has a metal concentration gradient and an oxygen concentration gradient.
12 . A semiconductor device comprising:
an interface insulating layer formed over a substrate;
a gate dielectric layer formed over the interface insulating layer;
a lower gate barrier layer formed over the gate dielectric layer;
a lower gate electrode formed over the lower gate barrier layer;
an upper gate barrier layer formed over the lower gate electrode; and
an upper gate electrode formed over the upper gate barrier layer,
wherein the lower gate electrode includes a plurality of metal-rich metal oxide layers having oxygen vacancy concentrations different from each other,
wherein the plurality of metal-rich metal oxide layers has a higher metal mass ratio and a higher oxygen vacancy concentration than a metal oxide according to the Law of Definite Proportions to enhance a work function of the lower gate electrode, and
wherein the metal mass ratio is defined as a mass ratio of metal ions that are not bonded to oxygen due to an oxygen vacancy.
13 . The semiconductor device of claim 12 , wherein:
the upper gate barrier layer surrounds side surfaces and a bottom surface of the upper gate electrode,
the lower gate electrode surrounds side surfaces and a bottom surface of the upper gate barrier layer,
the lower gate barrier layer surrounds side surfaces and a bottom surface of the lower gate electrode, and
the gate dielectric layer surrounds side surfaces and a bottom surface of the lower gate barrier layer.
14 . The semiconductor device of claim 12 , wherein the plurality of metal-rich metal oxide layers includes molybdenum oxide.
15 . The semiconductor device of claim 12 , wherein the lower gate electrode includes the plurality of metal-rich metal oxide layers and a plurality of metal layers alternately stacked.
16 . The semiconductor device of claim 15 , wherein the plurality of metal layers includes molybdenum.
17 . The semiconductor device of claim 12 , wherein the plurality of metal-rich metal oxide layers has a metal concentration gradient and an oxygen concentration gradient.
18 . A semiconductor device comprising:
a fin region protruding from a substrate;
a field insulating layer formed over the substrate and surrounding a lower portion of the fin region;
an interface insulating layer formed over a surface of the fin region;
a gate dielectric layer formed over an upper surface of the field insulating layer and an upper surface of the interface insulating layer;
a lower gate barrier layer formed over the gate dielectric layer; and
a lower gate electrode formed over the lower gate barrier layer,
wherein the lower gate electrode includes a multi-layered structure in which a plurality of metal-rich metal oxide layers have oxygen vacancy concentrations different from each other,
wherein the plurality of metal-rich metal oxide layers has a higher metal mass ratio and a higher oxygen vacancy concentration than a metal oxide according to the Law of Definite Proportions to enhance a work function of the lower gate electrode, and
wherein the metal mass ratio is defined as a mass ratio of metal ions that are not bonded to oxygen due to an oxygen vacancy.
19 . The semiconductor device of claim 18 , wherein the plurality of metal-rich metal oxide layers includes a plurality of molybdenum oxide layers.
20 . The semiconductor device of claim 18 , wherein the multi-layered structure further includes a plurality of metal layers alternately interposed with the plurality of metal-rich metal oxide layers.