Patent
US 10,040,683Patent
Atlas literature
Patent
US 10,040,683Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is a perspective view of a graphene sheet according to an exemplary embodiment; [31]
FIG. 2, according to an exemplary embodiment; [33] FIG s. 4 through 8 illustrate cross-sectional views corresponding to the operations shown in FIG s. 2 and 3, …
FIG. 3 schematically illustrates a process of
FIG. 7, the laminator 40 is heated to radiate heat, and to do this, the laminator 40 may include a metal material. A temperature of the laminator 40 may be …
FIG. 8 shows when the carrier 400a, that is the thermal release tape, is removed and a graphene sheet 200a including the first and second graphene layers 210a …
FIG. 9 illustrates a cross-sectional view of a graphene sheet including three graphene layers, according to an exemplary embodiment; [35]
FIG. 10 illustrates a cross-sectional view of a graphene sheet including four graphene layers, according to an exemplary embodiment; [36]
FIG. 11 illustrates a processing diagram illustrating a method of fabricating multi-layered graphene, according to another exemplary 6 embodiment; [37]
FIG. 12, according to an exemplary embodiment; [39] FIG s. 14 through 17 illustrate cross-sectional views corresponding to the operations of
FIG. 13 illustrates a flowchart of an operation (S₁₂₀) of disposing a first graphene layer shown in
FIG. 14A. In addition, the base layer 511 may be formed of an inorganic material such as glass, GaN, or silica, or a metal such as Ni, Cu, or W. Otherwise, the …
FIG. 15. [108] Referring to FIG s. 13 and 16, in operation 5 213, a carrier 400c 26 is disposed on the first graphene layer 210c. The carrier 400 c is a medium …
FIG. 17. [110] Referring to
FIG. 18, according to an exemplary embodiment; [42] FIG s. 23 through 25 illustrate cross-sectional views corresponding to the operations S₂₃₀ and S₂₄₀ of
FIG. 19A. In addition, the base layer 611 may be formed of an inorganic material such as glass, GaN, or silica, or a metal such as Ni, Cu, or W. Otherwise, the …
FIG. 20. [118] Referring to FIG s. 18 and 21, in operation S 223, the first stacked structure Al including the carrier 400 c and the first graphene layer 210c is …
FIG. 22. The new graphene layer may be disposed in the same manner as described with reference to FIG s. 18 through 21. A stacked structure on which the new …
FIG. 25. [128] According to an exemplary embodiment, since the second 31 graphene layer 220c is disposed on the opposite surface of the first graphene layer 21 …
FIG. 26 illustrates a method of fabricating a graphene sheet including one graphene layer, according to a first comparative example; and [44]
FIG. 27 illustrates a method of fabricating a graphene sheet including a plurality of graphene layers, according to a second comparative example.
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
: A method of fabricating multi-layered graphene, the method comprising: disposing a first graphene layer on a carrier; disposing at least one second graphene layer on the first graphene layer to form a graphene sheet disposed on the carrier; transferring the graphene sheet disposed on the ca rr ier onto a substrate; and removing the ca rr ier; wherein a surface roughness of the carrier is greater than a thickness of the first graphene layer and a thickness of the at least one second graphene layer. Previously presented
: The method of claim 1, wherein the carrier comprises polymer. Original
: The method of claim 1, wherein the carrier comprises a thermal release tape. Original
: The method of claim 1, wherein the disposing the at least one second graphene layer comprises disposing N different graphene layers on the first graphene layer, and, wherein the disposing the N different graphene layers comprises repeating following operations N times: disposing one graphene layer on a catalyst metal layer; disposing the one graphene layer, disposed on the catalyst metal layer, on the first graphene layer that is disposed on the carrier; and removing the second catalyst layer, and wherein N is a natural number equal to 2 or greater. Previously presented
: The method of claim 1, wherein the carrier comprises at least one of polymer and a thermal release tape, and AMENDMENT UNDER 37 C.F.R. § 1.116 Attorney Docket No.: Q₁₂₇₆₇₈ wherein, in the disposing the at least one second graphene layer on the first graphene layer, the carrier is not used. Previously presented
: The graphene sheet fabricated by the method of claim 1. Withdrawn
. Canceled
Canceled
Canceled
(Cu rr ently Amended): A method of fabricating multi-layered graphene, the method comprising the following steps in order: (1) disposing a first graphene layer on a thermal release tape; (2) disposing at least one second graphene layer on the first graphene layer disposed on the thermal release tape to form a graphene sheet disposed on the thermal release tape; (3) transferring the graphene sheet disposed on the thermal release tape onto a substrate; and (4) removing the thermal release tape, wherein the step (4) is performed only once in the method, and wherein a surface roughness of the thermal adhesive tape is greater than a thickness of the first graphene layer and a thickness of the at least one second graphene layer. Currently amended
: The method of claim 12, further comprising laminating the first graphene layer and the at least one second graphene layer; the step of laminating comprising: conveying a stacked structure including the first graphene layer and the at least one second graphene layer toward a laminator; and integrating the first graphene layer and the at least one second graphene layer with one another using the laminator, wherein the laminator radiates heat. Previously presented
: A graphene sheet fabricated by the method of claim 12, wherein the graphene sheet comprises the laminated first graphene layer and the at least one second graphene layer. Withdrawn
. Canceled
. Canceled
. Canceled
. Canceled
. Canceled
: A graphene sheet comprising: a first graphene layer disposed on a substrate; and at least one second graphene layer disposed on the first graphene layer, wherein at least one of the first graphene layer and the at least one second graphene layer has at least one damaged region. Withdrawn
: The graphene sheet of claim 21, wherein the at least one damaged region of each of the graphene layers constituting the graphene sheet contacts at least one of non- damaged regions of a graphene layer or graphene layers, of the graphene layers, contacting the each of the graphene layers. Withdrawn
Canceled
Canceled
. Canceled
(Canceled) Canceled
Layer stacks claimed or described, ordered top of device to substrate.
multi-layered graphene sheet on substrate
Materials described outside the worked examples.
first graphene layer
second graphene layer
Additional fabrication and treatment steps described in the patent.
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Temperature | 90–120 °C | — |
Table 1
SVG
sheet according to the first comparative example were performed twice, respectively, and results are shown in Table 1 and Table 2.
p. 11
Patent
Atlas literature
Patent
US 10,040,683Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is a perspective view of a graphene sheet according to an exemplary embodiment; [31]
FIG. 2, according to an exemplary embodiment; [33] FIG s. 4 through 8 illustrate cross-sectional views corresponding to the operations shown in FIG s. 2 and 3, …
FIG. 3 schematically illustrates a process of
FIG. 7, the laminator 40 is heated to radiate heat, and to do this, the laminator 40 may include a metal material. A temperature of the laminator 40 may be …
FIG. 8 shows when the carrier 400a, that is the thermal release tape, is removed and a graphene sheet 200a including the first and second graphene layers 210a …
FIG. 9 illustrates a cross-sectional view of a graphene sheet including three graphene layers, according to an exemplary embodiment; [35]
FIG. 10 illustrates a cross-sectional view of a graphene sheet including four graphene layers, according to an exemplary embodiment; [36]
FIG. 11 illustrates a processing diagram illustrating a method of fabricating multi-layered graphene, according to another exemplary 6 embodiment; [37]
FIG. 12, according to an exemplary embodiment; [39] FIG s. 14 through 17 illustrate cross-sectional views corresponding to the operations of
FIG. 13 illustrates a flowchart of an operation (S₁₂₀) of disposing a first graphene layer shown in
FIG. 14A. In addition, the base layer 511 may be formed of an inorganic material such as glass, GaN, or silica, or a metal such as Ni, Cu, or W. Otherwise, the …
FIG. 15. [108] Referring to FIG s. 13 and 16, in operation 5 213, a carrier 400c 26 is disposed on the first graphene layer 210c. The carrier 400 c is a medium …
FIG. 17. [110] Referring to
FIG. 18, according to an exemplary embodiment; [42] FIG s. 23 through 25 illustrate cross-sectional views corresponding to the operations S₂₃₀ and S₂₄₀ of
FIG. 19A. In addition, the base layer 611 may be formed of an inorganic material such as glass, GaN, or silica, or a metal such as Ni, Cu, or W. Otherwise, the …
FIG. 20. [118] Referring to FIG s. 18 and 21, in operation S 223, the first stacked structure Al including the carrier 400 c and the first graphene layer 210c is …
FIG. 22. The new graphene layer may be disposed in the same manner as described with reference to FIG s. 18 through 21. A stacked structure on which the new …
FIG. 25. [128] According to an exemplary embodiment, since the second 31 graphene layer 220c is disposed on the opposite surface of the first graphene layer 21 …
FIG. 26 illustrates a method of fabricating a graphene sheet including one graphene layer, according to a first comparative example; and [44]
FIG. 27 illustrates a method of fabricating a graphene sheet including a plurality of graphene layers, according to a second comparative example.
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
: A method of fabricating multi-layered graphene, the method comprising: disposing a first graphene layer on a carrier; disposing at least one second graphene layer on the first graphene layer to form a graphene sheet disposed on the carrier; transferring the graphene sheet disposed on the ca rr ier onto a substrate; and removing the ca rr ier; wherein a surface roughness of the carrier is greater than a thickness of the first graphene layer and a thickness of the at least one second graphene layer. Previously presented
: The method of claim 1, wherein the carrier comprises polymer. Original
: The method of claim 1, wherein the carrier comprises a thermal release tape. Original
: The method of claim 1, wherein the disposing the at least one second graphene layer comprises disposing N different graphene layers on the first graphene layer, and, wherein the disposing the N different graphene layers comprises repeating following operations N times: disposing one graphene layer on a catalyst metal layer; disposing the one graphene layer, disposed on the catalyst metal layer, on the first graphene layer that is disposed on the carrier; and removing the second catalyst layer, and wherein N is a natural number equal to 2 or greater. Previously presented
: The method of claim 1, wherein the carrier comprises at least one of polymer and a thermal release tape, and AMENDMENT UNDER 37 C.F.R. § 1.116 Attorney Docket No.: Q₁₂₇₆₇₈ wherein, in the disposing the at least one second graphene layer on the first graphene layer, the carrier is not used. Previously presented
: The graphene sheet fabricated by the method of claim 1. Withdrawn
. Canceled
Canceled
Canceled
(Cu rr ently Amended): A method of fabricating multi-layered graphene, the method comprising the following steps in order: (1) disposing a first graphene layer on a thermal release tape; (2) disposing at least one second graphene layer on the first graphene layer disposed on the thermal release tape to form a graphene sheet disposed on the thermal release tape; (3) transferring the graphene sheet disposed on the thermal release tape onto a substrate; and (4) removing the thermal release tape, wherein the step (4) is performed only once in the method, and wherein a surface roughness of the thermal adhesive tape is greater than a thickness of the first graphene layer and a thickness of the at least one second graphene layer. Currently amended
: The method of claim 12, further comprising laminating the first graphene layer and the at least one second graphene layer; the step of laminating comprising: conveying a stacked structure including the first graphene layer and the at least one second graphene layer toward a laminator; and integrating the first graphene layer and the at least one second graphene layer with one another using the laminator, wherein the laminator radiates heat. Previously presented
: A graphene sheet fabricated by the method of claim 12, wherein the graphene sheet comprises the laminated first graphene layer and the at least one second graphene layer. Withdrawn
. Canceled
. Canceled
. Canceled
. Canceled
. Canceled
: A graphene sheet comprising: a first graphene layer disposed on a substrate; and at least one second graphene layer disposed on the first graphene layer, wherein at least one of the first graphene layer and the at least one second graphene layer has at least one damaged region. Withdrawn
: The graphene sheet of claim 21, wherein the at least one damaged region of each of the graphene layers constituting the graphene sheet contacts at least one of non- damaged regions of a graphene layer or graphene layers, of the graphene layers, contacting the each of the graphene layers. Withdrawn
Canceled
Canceled
. Canceled
(Canceled) Canceled
Layer stacks claimed or described, ordered top of device to substrate.
multi-layered graphene sheet on substrate
Materials described outside the worked examples.
first graphene layer
second graphene layer
Additional fabrication and treatment steps described in the patent.
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Temperature | 90–120 °C | — |
Table 1
SVG
sheet according to the first comparative example were performed twice, respectively, and results are shown in Table 1 and Table 2.
p. 11
Patent
Atlas literature
Patent
US 10,040,683Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is a perspective view of a graphene sheet according to an exemplary embodiment; [31]
FIG. 2, according to an exemplary embodiment; [33] FIG s. 4 through 8 illustrate cross-sectional views corresponding to the operations shown in FIG s. 2 and 3, …
FIG. 3 schematically illustrates a process of
FIG. 7, the laminator 40 is heated to radiate heat, and to do this, the laminator 40 may include a metal material. A temperature of the laminator 40 may be …
FIG. 8 shows when the carrier 400a, that is the thermal release tape, is removed and a graphene sheet 200a including the first and second graphene layers 210a …
FIG. 9 illustrates a cross-sectional view of a graphene sheet including three graphene layers, according to an exemplary embodiment; [35]
FIG. 10 illustrates a cross-sectional view of a graphene sheet including four graphene layers, according to an exemplary embodiment; [36]
FIG. 11 illustrates a processing diagram illustrating a method of fabricating multi-layered graphene, according to another exemplary 6 embodiment; [37]
FIG. 12, according to an exemplary embodiment; [39] FIG s. 14 through 17 illustrate cross-sectional views corresponding to the operations of
FIG. 13 illustrates a flowchart of an operation (S₁₂₀) of disposing a first graphene layer shown in
FIG. 14A. In addition, the base layer 511 may be formed of an inorganic material such as glass, GaN, or silica, or a metal such as Ni, Cu, or W. Otherwise, the …
FIG. 15. [108] Referring to FIG s. 13 and 16, in operation 5 213, a carrier 400c 26 is disposed on the first graphene layer 210c. The carrier 400 c is a medium …
FIG. 17. [110] Referring to
FIG. 18, according to an exemplary embodiment; [42] FIG s. 23 through 25 illustrate cross-sectional views corresponding to the operations S₂₃₀ and S₂₄₀ of
FIG. 19A. In addition, the base layer 611 may be formed of an inorganic material such as glass, GaN, or silica, or a metal such as Ni, Cu, or W. Otherwise, the …
FIG. 20. [118] Referring to FIG s. 18 and 21, in operation S 223, the first stacked structure Al including the carrier 400 c and the first graphene layer 210c is …
FIG. 22. The new graphene layer may be disposed in the same manner as described with reference to FIG s. 18 through 21. A stacked structure on which the new …
FIG. 25. [128] According to an exemplary embodiment, since the second 31 graphene layer 220c is disposed on the opposite surface of the first graphene layer 21 …
FIG. 26 illustrates a method of fabricating a graphene sheet including one graphene layer, according to a first comparative example; and [44]
FIG. 27 illustrates a method of fabricating a graphene sheet including a plurality of graphene layers, according to a second comparative example.
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
: A method of fabricating multi-layered graphene, the method comprising: disposing a first graphene layer on a carrier; disposing at least one second graphene layer on the first graphene layer to form a graphene sheet disposed on the carrier; transferring the graphene sheet disposed on the ca rr ier onto a substrate; and removing the ca rr ier; wherein a surface roughness of the carrier is greater than a thickness of the first graphene layer and a thickness of the at least one second graphene layer. Previously presented
: The method of claim 1, wherein the carrier comprises polymer. Original
: The method of claim 1, wherein the carrier comprises a thermal release tape. Original
: The method of claim 1, wherein the disposing the at least one second graphene layer comprises disposing N different graphene layers on the first graphene layer, and, wherein the disposing the N different graphene layers comprises repeating following operations N times: disposing one graphene layer on a catalyst metal layer; disposing the one graphene layer, disposed on the catalyst metal layer, on the first graphene layer that is disposed on the carrier; and removing the second catalyst layer, and wherein N is a natural number equal to 2 or greater. Previously presented
: The method of claim 1, wherein the carrier comprises at least one of polymer and a thermal release tape, and AMENDMENT UNDER 37 C.F.R. § 1.116 Attorney Docket No.: Q₁₂₇₆₇₈ wherein, in the disposing the at least one second graphene layer on the first graphene layer, the carrier is not used. Previously presented
: The graphene sheet fabricated by the method of claim 1. Withdrawn
. Canceled
Canceled
Canceled
(Cu rr ently Amended): A method of fabricating multi-layered graphene, the method comprising the following steps in order: (1) disposing a first graphene layer on a thermal release tape; (2) disposing at least one second graphene layer on the first graphene layer disposed on the thermal release tape to form a graphene sheet disposed on the thermal release tape; (3) transferring the graphene sheet disposed on the thermal release tape onto a substrate; and (4) removing the thermal release tape, wherein the step (4) is performed only once in the method, and wherein a surface roughness of the thermal adhesive tape is greater than a thickness of the first graphene layer and a thickness of the at least one second graphene layer. Currently amended
: The method of claim 12, further comprising laminating the first graphene layer and the at least one second graphene layer; the step of laminating comprising: conveying a stacked structure including the first graphene layer and the at least one second graphene layer toward a laminator; and integrating the first graphene layer and the at least one second graphene layer with one another using the laminator, wherein the laminator radiates heat. Previously presented
: A graphene sheet fabricated by the method of claim 12, wherein the graphene sheet comprises the laminated first graphene layer and the at least one second graphene layer. Withdrawn
. Canceled
. Canceled
. Canceled
. Canceled
. Canceled
: A graphene sheet comprising: a first graphene layer disposed on a substrate; and at least one second graphene layer disposed on the first graphene layer, wherein at least one of the first graphene layer and the at least one second graphene layer has at least one damaged region. Withdrawn
: The graphene sheet of claim 21, wherein the at least one damaged region of each of the graphene layers constituting the graphene sheet contacts at least one of non- damaged regions of a graphene layer or graphene layers, of the graphene layers, contacting the each of the graphene layers. Withdrawn
Canceled
Canceled
. Canceled
(Canceled) Canceled
Layer stacks claimed or described, ordered top of device to substrate.
multi-layered graphene sheet on substrate
Materials described outside the worked examples.
first graphene layer
second graphene layer
Additional fabrication and treatment steps described in the patent.
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Temperature | 90–120 °C | — |
Table 1
SVG
sheet according to the first comparative example were performed twice, respectively, and results are shown in Table 1 and Table 2.
p. 11
Patent
Atlas literature
Patent
US 10,040,683Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is a perspective view of a graphene sheet according to an exemplary embodiment; [31]
FIG. 2, according to an exemplary embodiment; [33] FIG s. 4 through 8 illustrate cross-sectional views corresponding to the operations shown in FIG s. 2 and 3, …
FIG. 3 schematically illustrates a process of
FIG. 7, the laminator 40 is heated to radiate heat, and to do this, the laminator 40 may include a metal material. A temperature of the laminator 40 may be …
FIG. 8 shows when the carrier 400a, that is the thermal release tape, is removed and a graphene sheet 200a including the first and second graphene layers 210a …
FIG. 9 illustrates a cross-sectional view of a graphene sheet including three graphene layers, according to an exemplary embodiment; [35]
FIG. 10 illustrates a cross-sectional view of a graphene sheet including four graphene layers, according to an exemplary embodiment; [36]
FIG. 11 illustrates a processing diagram illustrating a method of fabricating multi-layered graphene, according to another exemplary 6 embodiment; [37]
FIG. 12, according to an exemplary embodiment; [39] FIG s. 14 through 17 illustrate cross-sectional views corresponding to the operations of
FIG. 13 illustrates a flowchart of an operation (S₁₂₀) of disposing a first graphene layer shown in
FIG. 14A. In addition, the base layer 511 may be formed of an inorganic material such as glass, GaN, or silica, or a metal such as Ni, Cu, or W. Otherwise, the …
FIG. 15. [108] Referring to FIG s. 13 and 16, in operation 5 213, a carrier 400c 26 is disposed on the first graphene layer 210c. The carrier 400 c is a medium …
FIG. 17. [110] Referring to
FIG. 18, according to an exemplary embodiment; [42] FIG s. 23 through 25 illustrate cross-sectional views corresponding to the operations S₂₃₀ and S₂₄₀ of
FIG. 19A. In addition, the base layer 611 may be formed of an inorganic material such as glass, GaN, or silica, or a metal such as Ni, Cu, or W. Otherwise, the …
FIG. 20. [118] Referring to FIG s. 18 and 21, in operation S 223, the first stacked structure Al including the carrier 400 c and the first graphene layer 210c is …
FIG. 22. The new graphene layer may be disposed in the same manner as described with reference to FIG s. 18 through 21. A stacked structure on which the new …
FIG. 25. [128] According to an exemplary embodiment, since the second 31 graphene layer 220c is disposed on the opposite surface of the first graphene layer 21 …
FIG. 26 illustrates a method of fabricating a graphene sheet including one graphene layer, according to a first comparative example; and [44]
FIG. 27 illustrates a method of fabricating a graphene sheet including a plurality of graphene layers, according to a second comparative example.
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
: A method of fabricating multi-layered graphene, the method comprising: disposing a first graphene layer on a carrier; disposing at least one second graphene layer on the first graphene layer to form a graphene sheet disposed on the carrier; transferring the graphene sheet disposed on the ca rr ier onto a substrate; and removing the ca rr ier; wherein a surface roughness of the carrier is greater than a thickness of the first graphene layer and a thickness of the at least one second graphene layer. Previously presented
: The method of claim 1, wherein the carrier comprises polymer. Original
: The method of claim 1, wherein the carrier comprises a thermal release tape. Original
: The method of claim 1, wherein the disposing the at least one second graphene layer comprises disposing N different graphene layers on the first graphene layer, and, wherein the disposing the N different graphene layers comprises repeating following operations N times: disposing one graphene layer on a catalyst metal layer; disposing the one graphene layer, disposed on the catalyst metal layer, on the first graphene layer that is disposed on the carrier; and removing the second catalyst layer, and wherein N is a natural number equal to 2 or greater. Previously presented
: The method of claim 1, wherein the carrier comprises at least one of polymer and a thermal release tape, and AMENDMENT UNDER 37 C.F.R. § 1.116 Attorney Docket No.: Q₁₂₇₆₇₈ wherein, in the disposing the at least one second graphene layer on the first graphene layer, the carrier is not used. Previously presented
: The graphene sheet fabricated by the method of claim 1. Withdrawn
. Canceled
Canceled
Canceled
(Cu rr ently Amended): A method of fabricating multi-layered graphene, the method comprising the following steps in order: (1) disposing a first graphene layer on a thermal release tape; (2) disposing at least one second graphene layer on the first graphene layer disposed on the thermal release tape to form a graphene sheet disposed on the thermal release tape; (3) transferring the graphene sheet disposed on the thermal release tape onto a substrate; and (4) removing the thermal release tape, wherein the step (4) is performed only once in the method, and wherein a surface roughness of the thermal adhesive tape is greater than a thickness of the first graphene layer and a thickness of the at least one second graphene layer. Currently amended
: The method of claim 12, further comprising laminating the first graphene layer and the at least one second graphene layer; the step of laminating comprising: conveying a stacked structure including the first graphene layer and the at least one second graphene layer toward a laminator; and integrating the first graphene layer and the at least one second graphene layer with one another using the laminator, wherein the laminator radiates heat. Previously presented
: A graphene sheet fabricated by the method of claim 12, wherein the graphene sheet comprises the laminated first graphene layer and the at least one second graphene layer. Withdrawn
. Canceled
. Canceled
. Canceled
. Canceled
. Canceled
: A graphene sheet comprising: a first graphene layer disposed on a substrate; and at least one second graphene layer disposed on the first graphene layer, wherein at least one of the first graphene layer and the at least one second graphene layer has at least one damaged region. Withdrawn
: The graphene sheet of claim 21, wherein the at least one damaged region of each of the graphene layers constituting the graphene sheet contacts at least one of non- damaged regions of a graphene layer or graphene layers, of the graphene layers, contacting the each of the graphene layers. Withdrawn
Canceled
Canceled
. Canceled
(Canceled) Canceled
Layer stacks claimed or described, ordered top of device to substrate.
multi-layered graphene sheet on substrate
Materials described outside the worked examples.
first graphene layer
second graphene layer
Additional fabrication and treatment steps described in the patent.
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Temperature | 90–120 °C | — |
Table 1
SVG
sheet according to the first comparative example were performed twice, respectively, and results are shown in Table 1 and Table 2.
p. 11
polymer carrier
thermal release tape
catalyst metal layer
polyethylene terephthalate (PET)
polyimide (PI)
polymer carrier
thermal release tape
catalyst metal layer
polyethylene terephthalate (PET)
polyimide (PI)
polymer carrier
thermal release tape
catalyst metal layer
polyethylene terephthalate (PET)
polyimide (PI)
polymer carrier
thermal release tape
catalyst metal layer
polyethylene terephthalate (PET)
polyimide (PI)
