Graphene fluorination for integration of graphene with insulators and devices
Embodiments of the present disclosure describe multi-layer graphene assemblies including a layer of fluorinated graphene, dies and systems containing such structures, as well as methods of fabrication. The fluorinated graphene provides an insulating interface to other graphene layers while maintaining the desirable characteristics of the nonfluorinated graphene layers. The assemblies provide new options for utilizing graphene in integrated circuit devices and interfacing graphene with other materials. Other embodiments may be described and/or claimed.
1. An assembly for use in an integrated circuit, the assembly comprising:
a first layer comprising graphene;
a second layer comprising fluorinated graphene directly on the first layer comprising graphene;
a layer of electrically insulative material on the second layer of fluorinated graphene; and
an additional layer comprising fluorinated graphene on the layer of electrically insulative material.
2. The assembly of claim 1 , wherein the first layer comprising graphene is directly on a third layer comprising graphene.
3. The assembly of claim 1 , further comprising an electrically conductive material on the additional layer comprising fluorinated graphene.
4. The assembly of claim 1 , further comprising an additional layer comprising graphene on the additional layer comprising fluorinated graphene.
5. The assembly of claim 1 , wherein the layer of electrically insulative material is directly on the second layer of fluorinated graphene, and the additional layer comprising fluorinated graphene is directly on the layer of electrically insulative material.
6. A die comprising:
a semiconductor substrate;
a device layer on the semiconductor substrate, wherein the device layer includes one or more transistor devices;
an interconnect layer on the device layer;
a layer comprising graphene in the interconnect layer and configured to route electrical signals of the one or more transistor devices; and
a layer comprising fluorinated graphene directly on the layer comprising graphene.
7. The die of claim 6 , further comprising a gate electrode on the layer comprising fluorinated graphene.
8. The die of claim 7 , wherein a region of the layer comprising fluorinated graphene adjacent to an outer surface of the gate electrode comprises predominately non-fluorinated graphene.
9. The die of claim 7 , further comprising a gate dielectric between the layer comprising fluorinated graphene and the gate electrode.
10. The die of claim 9 , wherein the gate dielectric is directly on the layer comprising fluorinated graphene, the die further comprising an additional layer comprising fluorinated graphene between the gate dielectric and the gate electrode.
11. The die of claim 7 , wherein the gate electrode is formed from at least one additional layer comprising graphene.
12. The die of claim 6 , wherein the layer comprising graphene serves as a channel of a transistor device and the layer comprising fluorinated graphene serves as a gate dielectric of the transistor device.
13. The die of claim 6 , further comprising a low-k dielectric material on the layer comprising fluorinated graphene, wherein the low-k dielectric materials is between the layer comprising fluorinated graphene and an additional interconnect layer.
14. A method of fabricating an assembly, the method comprising:
providing a multilayer stack including a first layer comprising graphene directly on a second layer comprising graphene;
fluorinating the graphene of the first layer comprising graphene;
forming a layer of electrically insulative material on the first layer comprising graphene; and
coupling an additional layer comprising fluorinated graphene to the layer of electrically insulative material.
15. The method of claim 14 , wherein providing a multilayer stack includes:
depositing the second layer comprising graphene on a substrate by chemical vapor deposition; and
coupling the first layer comprising graphene to the second layer comprising graphene.
16. The method of claim 14 , further comprising:
depositing an electrically conductive material on the first layer comprising graphene prior to fluorinating the graphene of the first layer; and
selectively removing portions of the electrically conductive material to expose one or more portions of the first layer comprising graphene prior to fluorinating the graphene of the first layer,
wherein the electrically conductive material prevents the portions of the first layer comprising graphene covered by the electrically conductive material from being fluorinated during said fluorinating the graphene of the first layer.
17. A computing device, comprising:
a circuit board; and
a die coupled with the circuit board, the die including:
a semiconductor substrate;
a first layer comprising graphene on the semiconductor substrate;
a second layer comprising fluorinated graphene directly on the layer comprising graphene;
a third layer of electrically insulative material directly on the second layer; and
a fourth layer comprising fluorinated graphene directly on the third layer.
18. The computing device of claim 17 , wherein
the die is a processor; and
the computing device is a mobile computing device including one or more of an antenna, a display, a touchscreen display, a touchscreen controller, a battery, an audio codec, a video codec, a power amplifier, a global positioning system (GPS) device, a compass, a Geiger counter, an accelerometer, a gyroscope, a speaker, and camera.