Patent
US 10,315,401self-adhesive coating
graphite
catalyst layer
metals or alloys for substrate/catalyst
polyethylene terephthalate (PET)
FIG. 3C show a result of analysis on a surface of graphene transferred by an example of the present disclosure by using an atomic force microscope (AFM). [0014]
FIG. 4C show a result of analysis on a surface of graphene transferred by an example of the present disclosure by using an atomic force microscope (AFM). [0015]
FIG. 5C show a result of analysis on a surface of graphene having an area of 5 nm x 5 nm and transferred onto a PET substrate by using an atomic force …
FIG. 5C show a result of analysis on a surface of graphene having an area of 5 nm x 5 nm and transferred onto a PET substrate by using an atomic force …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 9, even when graphene was transferred one or more times by using the same self-adhesive film, there was no big difference in sheet resistance of the …
FIG. 11, it was observed that as a gate voltage increases, the resistance of the gate channel tends to decrease. Therefore, it was confirmed that the graphene …
self-adhesive coating
graphite
catalyst layer
metals or alloys for substrate/catalyst
polyethylene terephthalate (PET)
FIG. 3C show a result of analysis on a surface of graphene transferred by an example of the present disclosure by using an atomic force microscope (AFM). [0014]
FIG. 4C show a result of analysis on a surface of graphene transferred by an example of the present disclosure by using an atomic force microscope (AFM). [0015]
FIG. 5C show a result of analysis on a surface of graphene having an area of 5 nm x 5 nm and transferred onto a PET substrate by using an atomic force …
FIG. 5C show a result of analysis on a surface of graphene having an area of 5 nm x 5 nm and transferred onto a PET substrate by using an atomic force …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 9, even when graphene was transferred one or more times by using the same self-adhesive film, there was no big difference in sheet resistance of the …
FIG. 11, it was observed that as a gate voltage increases, the resistance of the gate channel tends to decrease. Therefore, it was confirmed that the graphene …
self-adhesive coating
graphite
catalyst layer
metals or alloys for substrate/catalyst
polyethylene terephthalate (PET)
FIG. 3C show a result of analysis on a surface of graphene transferred by an example of the present disclosure by using an atomic force microscope (AFM). [0014]
FIG. 4C show a result of analysis on a surface of graphene transferred by an example of the present disclosure by using an atomic force microscope (AFM). [0015]
FIG. 5C show a result of analysis on a surface of graphene having an area of 5 nm x 5 nm and transferred onto a PET substrate by using an atomic force …
FIG. 5C show a result of analysis on a surface of graphene having an area of 5 nm x 5 nm and transferred onto a PET substrate by using an atomic force …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 9, even when graphene was transferred one or more times by using the same self-adhesive film, there was no big difference in sheet resistance of the …
FIG. 11, it was observed that as a gate voltage increases, the resistance of the gate channel tends to decrease. Therefore, it was confirmed that the graphene …
self-adhesive coating
graphite
catalyst layer
metals or alloys for substrate/catalyst
polyethylene terephthalate (PET)
FIG. 3C show a result of analysis on a surface of graphene transferred by an example of the present disclosure by using an atomic force microscope (AFM). [0014]
FIG. 4C show a result of analysis on a surface of graphene transferred by an example of the present disclosure by using an atomic force microscope (AFM). [0015]
FIG. 5C show a result of analysis on a surface of graphene having an area of 5 nm x 5 nm and transferred onto a PET substrate by using an atomic force …
FIG. 5C show a result of analysis on a surface of graphene having an area of 5 nm x 5 nm and transferred onto a PET substrate by using an atomic force …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 6, it was confirmed that as the number of layers of transferred graphene increases, the transmittance decreases. [0080] The probe station used to measure a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 7, it was confirmed that as the number of layers of transferred graphene increases, the sheet resistance decreases. That is, graphene transferred using a …
FIG. 9, even when graphene was transferred one or more times by using the same self-adhesive film, there was no big difference in sheet resistance of the …
FIG. 11, it was observed that as a gate voltage increases, the resistance of the gate channel tends to decrease. Therefore, it was confirmed that the graphene …