Patent
US 10,164,220Patent
Atlas literature
Patent
US 10,164,220Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 illustrates an example of a solid structure 100 that constitutes a graphene- based packaging material in accordance with one or more aspects of the …
FIG. 2 illustrates an example of the structure of an intermediate sheet of the battery packaging material illustrated in
FIG. 3 illustrates an example of a graphene-based packaging material having a solid structure 300 an outer member 310 formed from a composite material in …
FIGS. 4A-4B illustrate other examples of solid structure for packaging in accordance with one or more aspects of the disclosure. [0007] FIGs. 5-6 illustrate …
FIG. 5. The example process 500 includes block 510 at which an amount of graphene and/or graphene oxide may be deposited onto a substrate 514. The graphene can …
FIG. 6 illustrates another example process 600 for producing graphene-based packaging materials (which herein also may be referred to as graphene-based …
FIG. 7 illustrates an example of a battery packaging process in accordance with one or more aspects of the disclosure. [0009] FIGs. 8-9 illustrate examples of …
FIG. 8 presents a schematic example of an electronic device 800 that can include a battery packaged in accordance with one or more aspects of the disclosure. …
FIG. 9 illustrates another example of an electronic device 904 that can include a battery that is packaged with a graphene-based battery packaging in …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
1-4. Canceled
Canceled
A battery, comprising: an outer member comprising a translucent polymer film, the outer member having an upper surface and a lower surface opposite to the upper surface; a translucent graphene-based member having a first surface and a second surface opposite to the first surface, the first surface being in contact with the lower surface of the outer member; and an inner member comprising a translucent thermoplastic film, the inner member having an upper surface in contact with the second surface of the translucent graphene-based member and a lower surface opposite to the upper surface of the inner member, wherein the translucent polymer film has a first melting point and a first mechanical strength, and the translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Previously presented
The battery of Claim 5, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The battery of Claim 5, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises a film having a thickness in a range from about 1 A ngstrom to about 400 A ngstrom. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises a graphene film having a thickness in a range from about one atomic monolayer of graphene to about 100 atomic mono l ayers of graphene. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises one or more of a translucent graphene film or a translucent graphene oxide film. Original
The battery of Claim 5, wherein the translucent thermoplastic film comprises one or more of a thin acrylic film, a thin vinyl film, a polyester film, a biaxially-oriented polyethylene terephthalate film, a biaxially-oriented polypropylene film, or a polyether ether ketone film. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises one or more of an aliphatic polyamide or a material that absorbs electromagnetic radiation in an ultraviolet portion of an electromagnetic radiation spectrum. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises a plastic and a material that absorbs electromagnetic radiation in an ultraviolet portion of an electromagnetic radiation spectrum. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises one or more of a material that absorbs electromagnetic radiation in an Application Number: 14/340,236 Attorney Docket No.: 25396-0405 ultraviolet portion of an electromagnetic radiation spectrum, a photochromic material, or a thermochromic material. Previously presented
11-12. Canceled
Canceled
An electronic device, comprising: one or more memory devices; one or more processors coupled to the one or more memory devices; and a battery coupled to at least the one or more memory devices and the one or more processors, the battery comprising: an outer member comprising a translucent polymer film, the outer member having an upper surface and a lower surface opposite to the upper surface, a translucent graphene-based member having a first surface and a second surface opposite to the first surface, the first surface being in contact with the lower surface of the outer member, and an inner member comprising a translucent thermoplastic film, the inner member having an upper surface in contact with the second surface of the translucent graphene- based member and a lower surface opposite to the upper surface of the inner member, wherein the translucent polymer film has a first melting point and a first mechanical strength, and the translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Previously presented
The electronic device of Claim 17, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The electronic device of Claim 17, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises a film having a thickness in a range from about 1 Angstrom to about 400 Angstrom. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises a graphene film having a thickness in a range from about one atomic monolayer of graphene to about 100 atomic monolayers of graphene. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises one or more of a translucent graphene film or a translucent graphene oxide film. Previously presented
The electronic device of Claim 17, wherein the translucent thermoplastic film comprises one or more of a thin acrylic film, a thin vinyl film, a polyester film, a biaxially-oriented polyethylene terephthalate film, a biaxially-oriented polypropylene film, or a polyether ether ketone film. Previously presented
23-24. Canceled
Canceled
A package, comprising: a first translucent thermoplastic film having a first surface; a translucent graphene-based film having a first surface and a second surface opposite to the first surface, the first surface being in contact with at least a portion of the first surface of the first translucent polymer film; and a second translucent thermoplastic film having a first surface in contact with at least a portion of the second surface of the translucent graphene-based film; wherein the first translucent thermoplastic film has a first melting point and a first mechanical strength, and the second translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Currently amended
The package of Claim 26, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Previously presented
The package of Claim 26, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Previously presented
Layer stacks claimed or described, ordered top of device to substrate.
graphene-based battery packaging (battery)
electronic device with graphene-based battery packaging
Materials described outside the worked examples.
translucent polymer film (outer member)
translucent graphene-based member
Measurements and analyses referenced in the patent, with their drawing references.
FIGS. 4A-4B illustrate other examples of solid structure for packaging in accordance with one or more aspects of the disclosure. [0007] FIGs. 5-6 illustrate …
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
optical transmittance range for graphene-based member (claim range) | 10–90 | translucent graphene-based member |
optical transmittance at 10 monolayers graphene (claim embodiment) | 85–85 |
Related documents with shared materials, methods, properties, or citations.
Patent
Atlas literature
Patent
US 10,164,220Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 illustrates an example of a solid structure 100 that constitutes a graphene- based packaging material in accordance with one or more aspects of the …
FIG. 2 illustrates an example of the structure of an intermediate sheet of the battery packaging material illustrated in
FIG. 3 illustrates an example of a graphene-based packaging material having a solid structure 300 an outer member 310 formed from a composite material in …
FIGS. 4A-4B illustrate other examples of solid structure for packaging in accordance with one or more aspects of the disclosure. [0007] FIGs. 5-6 illustrate …
FIG. 5. The example process 500 includes block 510 at which an amount of graphene and/or graphene oxide may be deposited onto a substrate 514. The graphene can …
FIG. 6 illustrates another example process 600 for producing graphene-based packaging materials (which herein also may be referred to as graphene-based …
FIG. 7 illustrates an example of a battery packaging process in accordance with one or more aspects of the disclosure. [0009] FIGs. 8-9 illustrate examples of …
FIG. 8 presents a schematic example of an electronic device 800 that can include a battery packaged in accordance with one or more aspects of the disclosure. …
FIG. 9 illustrates another example of an electronic device 904 that can include a battery that is packaged with a graphene-based battery packaging in …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
1-4. Canceled
Canceled
A battery, comprising: an outer member comprising a translucent polymer film, the outer member having an upper surface and a lower surface opposite to the upper surface; a translucent graphene-based member having a first surface and a second surface opposite to the first surface, the first surface being in contact with the lower surface of the outer member; and an inner member comprising a translucent thermoplastic film, the inner member having an upper surface in contact with the second surface of the translucent graphene-based member and a lower surface opposite to the upper surface of the inner member, wherein the translucent polymer film has a first melting point and a first mechanical strength, and the translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Previously presented
The battery of Claim 5, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The battery of Claim 5, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises a film having a thickness in a range from about 1 A ngstrom to about 400 A ngstrom. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises a graphene film having a thickness in a range from about one atomic monolayer of graphene to about 100 atomic mono l ayers of graphene. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises one or more of a translucent graphene film or a translucent graphene oxide film. Original
The battery of Claim 5, wherein the translucent thermoplastic film comprises one or more of a thin acrylic film, a thin vinyl film, a polyester film, a biaxially-oriented polyethylene terephthalate film, a biaxially-oriented polypropylene film, or a polyether ether ketone film. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises one or more of an aliphatic polyamide or a material that absorbs electromagnetic radiation in an ultraviolet portion of an electromagnetic radiation spectrum. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises a plastic and a material that absorbs electromagnetic radiation in an ultraviolet portion of an electromagnetic radiation spectrum. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises one or more of a material that absorbs electromagnetic radiation in an Application Number: 14/340,236 Attorney Docket No.: 25396-0405 ultraviolet portion of an electromagnetic radiation spectrum, a photochromic material, or a thermochromic material. Previously presented
11-12. Canceled
Canceled
An electronic device, comprising: one or more memory devices; one or more processors coupled to the one or more memory devices; and a battery coupled to at least the one or more memory devices and the one or more processors, the battery comprising: an outer member comprising a translucent polymer film, the outer member having an upper surface and a lower surface opposite to the upper surface, a translucent graphene-based member having a first surface and a second surface opposite to the first surface, the first surface being in contact with the lower surface of the outer member, and an inner member comprising a translucent thermoplastic film, the inner member having an upper surface in contact with the second surface of the translucent graphene- based member and a lower surface opposite to the upper surface of the inner member, wherein the translucent polymer film has a first melting point and a first mechanical strength, and the translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Previously presented
The electronic device of Claim 17, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The electronic device of Claim 17, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises a film having a thickness in a range from about 1 Angstrom to about 400 Angstrom. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises a graphene film having a thickness in a range from about one atomic monolayer of graphene to about 100 atomic monolayers of graphene. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises one or more of a translucent graphene film or a translucent graphene oxide film. Previously presented
The electronic device of Claim 17, wherein the translucent thermoplastic film comprises one or more of a thin acrylic film, a thin vinyl film, a polyester film, a biaxially-oriented polyethylene terephthalate film, a biaxially-oriented polypropylene film, or a polyether ether ketone film. Previously presented
23-24. Canceled
Canceled
A package, comprising: a first translucent thermoplastic film having a first surface; a translucent graphene-based film having a first surface and a second surface opposite to the first surface, the first surface being in contact with at least a portion of the first surface of the first translucent polymer film; and a second translucent thermoplastic film having a first surface in contact with at least a portion of the second surface of the translucent graphene-based film; wherein the first translucent thermoplastic film has a first melting point and a first mechanical strength, and the second translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Currently amended
The package of Claim 26, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Previously presented
The package of Claim 26, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Previously presented
Layer stacks claimed or described, ordered top of device to substrate.
graphene-based battery packaging (battery)
electronic device with graphene-based battery packaging
Materials described outside the worked examples.
translucent polymer film (outer member)
translucent graphene-based member
Measurements and analyses referenced in the patent, with their drawing references.
FIGS. 4A-4B illustrate other examples of solid structure for packaging in accordance with one or more aspects of the disclosure. [0007] FIGs. 5-6 illustrate …
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
optical transmittance range for graphene-based member (claim range) | 10–90 | translucent graphene-based member |
optical transmittance at 10 monolayers graphene (claim embodiment) | 85–85 |
Related documents with shared materials, methods, properties, or citations.
Patent
Atlas literature
Patent
US 10,164,220Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 illustrates an example of a solid structure 100 that constitutes a graphene- based packaging material in accordance with one or more aspects of the …
FIG. 2 illustrates an example of the structure of an intermediate sheet of the battery packaging material illustrated in
FIG. 3 illustrates an example of a graphene-based packaging material having a solid structure 300 an outer member 310 formed from a composite material in …
FIGS. 4A-4B illustrate other examples of solid structure for packaging in accordance with one or more aspects of the disclosure. [0007] FIGs. 5-6 illustrate …
FIG. 5. The example process 500 includes block 510 at which an amount of graphene and/or graphene oxide may be deposited onto a substrate 514. The graphene can …
FIG. 6 illustrates another example process 600 for producing graphene-based packaging materials (which herein also may be referred to as graphene-based …
FIG. 7 illustrates an example of a battery packaging process in accordance with one or more aspects of the disclosure. [0009] FIGs. 8-9 illustrate examples of …
FIG. 8 presents a schematic example of an electronic device 800 that can include a battery packaged in accordance with one or more aspects of the disclosure. …
FIG. 9 illustrates another example of an electronic device 904 that can include a battery that is packaged with a graphene-based battery packaging in …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
1-4. Canceled
Canceled
A battery, comprising: an outer member comprising a translucent polymer film, the outer member having an upper surface and a lower surface opposite to the upper surface; a translucent graphene-based member having a first surface and a second surface opposite to the first surface, the first surface being in contact with the lower surface of the outer member; and an inner member comprising a translucent thermoplastic film, the inner member having an upper surface in contact with the second surface of the translucent graphene-based member and a lower surface opposite to the upper surface of the inner member, wherein the translucent polymer film has a first melting point and a first mechanical strength, and the translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Previously presented
The battery of Claim 5, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The battery of Claim 5, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises a film having a thickness in a range from about 1 A ngstrom to about 400 A ngstrom. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises a graphene film having a thickness in a range from about one atomic monolayer of graphene to about 100 atomic mono l ayers of graphene. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises one or more of a translucent graphene film or a translucent graphene oxide film. Original
The battery of Claim 5, wherein the translucent thermoplastic film comprises one or more of a thin acrylic film, a thin vinyl film, a polyester film, a biaxially-oriented polyethylene terephthalate film, a biaxially-oriented polypropylene film, or a polyether ether ketone film. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises one or more of an aliphatic polyamide or a material that absorbs electromagnetic radiation in an ultraviolet portion of an electromagnetic radiation spectrum. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises a plastic and a material that absorbs electromagnetic radiation in an ultraviolet portion of an electromagnetic radiation spectrum. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises one or more of a material that absorbs electromagnetic radiation in an Application Number: 14/340,236 Attorney Docket No.: 25396-0405 ultraviolet portion of an electromagnetic radiation spectrum, a photochromic material, or a thermochromic material. Previously presented
11-12. Canceled
Canceled
An electronic device, comprising: one or more memory devices; one or more processors coupled to the one or more memory devices; and a battery coupled to at least the one or more memory devices and the one or more processors, the battery comprising: an outer member comprising a translucent polymer film, the outer member having an upper surface and a lower surface opposite to the upper surface, a translucent graphene-based member having a first surface and a second surface opposite to the first surface, the first surface being in contact with the lower surface of the outer member, and an inner member comprising a translucent thermoplastic film, the inner member having an upper surface in contact with the second surface of the translucent graphene- based member and a lower surface opposite to the upper surface of the inner member, wherein the translucent polymer film has a first melting point and a first mechanical strength, and the translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Previously presented
The electronic device of Claim 17, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The electronic device of Claim 17, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises a film having a thickness in a range from about 1 Angstrom to about 400 Angstrom. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises a graphene film having a thickness in a range from about one atomic monolayer of graphene to about 100 atomic monolayers of graphene. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises one or more of a translucent graphene film or a translucent graphene oxide film. Previously presented
The electronic device of Claim 17, wherein the translucent thermoplastic film comprises one or more of a thin acrylic film, a thin vinyl film, a polyester film, a biaxially-oriented polyethylene terephthalate film, a biaxially-oriented polypropylene film, or a polyether ether ketone film. Previously presented
23-24. Canceled
Canceled
A package, comprising: a first translucent thermoplastic film having a first surface; a translucent graphene-based film having a first surface and a second surface opposite to the first surface, the first surface being in contact with at least a portion of the first surface of the first translucent polymer film; and a second translucent thermoplastic film having a first surface in contact with at least a portion of the second surface of the translucent graphene-based film; wherein the first translucent thermoplastic film has a first melting point and a first mechanical strength, and the second translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Currently amended
The package of Claim 26, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Previously presented
The package of Claim 26, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Previously presented
Layer stacks claimed or described, ordered top of device to substrate.
graphene-based battery packaging (battery)
electronic device with graphene-based battery packaging
Materials described outside the worked examples.
translucent polymer film (outer member)
translucent graphene-based member
Measurements and analyses referenced in the patent, with their drawing references.
FIGS. 4A-4B illustrate other examples of solid structure for packaging in accordance with one or more aspects of the disclosure. [0007] FIGs. 5-6 illustrate …
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
optical transmittance range for graphene-based member (claim range) | 10–90 | translucent graphene-based member |
optical transmittance at 10 monolayers graphene (claim embodiment) | 85–85 |
Related documents with shared materials, methods, properties, or citations.
Patent
Atlas literature
Patent
US 10,164,220Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 illustrates an example of a solid structure 100 that constitutes a graphene- based packaging material in accordance with one or more aspects of the …
FIG. 2 illustrates an example of the structure of an intermediate sheet of the battery packaging material illustrated in
FIG. 3 illustrates an example of a graphene-based packaging material having a solid structure 300 an outer member 310 formed from a composite material in …
FIGS. 4A-4B illustrate other examples of solid structure for packaging in accordance with one or more aspects of the disclosure. [0007] FIGs. 5-6 illustrate …
FIG. 5. The example process 500 includes block 510 at which an amount of graphene and/or graphene oxide may be deposited onto a substrate 514. The graphene can …
FIG. 6 illustrates another example process 600 for producing graphene-based packaging materials (which herein also may be referred to as graphene-based …
FIG. 7 illustrates an example of a battery packaging process in accordance with one or more aspects of the disclosure. [0009] FIGs. 8-9 illustrate examples of …
FIG. 8 presents a schematic example of an electronic device 800 that can include a battery packaged in accordance with one or more aspects of the disclosure. …
FIG. 9 illustrates another example of an electronic device 904 that can include a battery that is packaged with a graphene-based battery packaging in …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
1-4. Canceled
Canceled
A battery, comprising: an outer member comprising a translucent polymer film, the outer member having an upper surface and a lower surface opposite to the upper surface; a translucent graphene-based member having a first surface and a second surface opposite to the first surface, the first surface being in contact with the lower surface of the outer member; and an inner member comprising a translucent thermoplastic film, the inner member having an upper surface in contact with the second surface of the translucent graphene-based member and a lower surface opposite to the upper surface of the inner member, wherein the translucent polymer film has a first melting point and a first mechanical strength, and the translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Previously presented
The battery of Claim 5, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The battery of Claim 5, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises a film having a thickness in a range from about 1 A ngstrom to about 400 A ngstrom. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises a graphene film having a thickness in a range from about one atomic monolayer of graphene to about 100 atomic mono l ayers of graphene. Original
The battery of Claim 5, wherein the translucent graphene-based member comprises one or more of a translucent graphene film or a translucent graphene oxide film. Original
The battery of Claim 5, wherein the translucent thermoplastic film comprises one or more of a thin acrylic film, a thin vinyl film, a polyester film, a biaxially-oriented polyethylene terephthalate film, a biaxially-oriented polypropylene film, or a polyether ether ketone film. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises one or more of an aliphatic polyamide or a material that absorbs electromagnetic radiation in an ultraviolet portion of an electromagnetic radiation spectrum. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises a plastic and a material that absorbs electromagnetic radiation in an ultraviolet portion of an electromagnetic radiation spectrum. Previously presented
The battery of Claim 5, wherein the translucent polymer film comprises one or more of a material that absorbs electromagnetic radiation in an Application Number: 14/340,236 Attorney Docket No.: 25396-0405 ultraviolet portion of an electromagnetic radiation spectrum, a photochromic material, or a thermochromic material. Previously presented
11-12. Canceled
Canceled
An electronic device, comprising: one or more memory devices; one or more processors coupled to the one or more memory devices; and a battery coupled to at least the one or more memory devices and the one or more processors, the battery comprising: an outer member comprising a translucent polymer film, the outer member having an upper surface and a lower surface opposite to the upper surface, a translucent graphene-based member having a first surface and a second surface opposite to the first surface, the first surface being in contact with the lower surface of the outer member, and an inner member comprising a translucent thermoplastic film, the inner member having an upper surface in contact with the second surface of the translucent graphene- based member and a lower surface opposite to the upper surface of the inner member, wherein the translucent polymer film has a first melting point and a first mechanical strength, and the translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Previously presented
The electronic device of Claim 17, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The electronic device of Claim 17, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises a film having a thickness in a range from about 1 Angstrom to about 400 Angstrom. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises a graphene film having a thickness in a range from about one atomic monolayer of graphene to about 100 atomic monolayers of graphene. Original
The electronic device of Claim 17, wherein the translucent graphene-based member comprises one or more of a translucent graphene film or a translucent graphene oxide film. Previously presented
The electronic device of Claim 17, wherein the translucent thermoplastic film comprises one or more of a thin acrylic film, a thin vinyl film, a polyester film, a biaxially-oriented polyethylene terephthalate film, a biaxially-oriented polypropylene film, or a polyether ether ketone film. Previously presented
23-24. Canceled
Canceled
A package, comprising: a first translucent thermoplastic film having a first surface; a translucent graphene-based film having a first surface and a second surface opposite to the first surface, the first surface being in contact with at least a portion of the first surface of the first translucent polymer film; and a second translucent thermoplastic film having a first surface in contact with at least a portion of the second surface of the translucent graphene-based film; wherein the first translucent thermoplastic film has a first melting point and a first mechanical strength, and the second translucent thermoplastic film has a second melting point and a second mechanical strength, the first melting point being higher than the second melting point and the first mechanical strength being higher than the second mechanical strength. Currently amended
The package of Claim 26, wherein the translucent graphene-based member has an optical transmittance ranging from about 10% to about 90 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Previously presented
The package of Claim 26, wherein the translucent graphene-based member has a thickness of about 10 atomic monolayers of graphene, and wherein the translucent graphene-based member has an optical transmittance of about 85 % for electromagnetic radiation wavelengths in a range from about 400 nm to about 800 nm. Previously presented
Layer stacks claimed or described, ordered top of device to substrate.
graphene-based battery packaging (battery)
electronic device with graphene-based battery packaging
Materials described outside the worked examples.
translucent polymer film (outer member)
translucent graphene-based member
Measurements and analyses referenced in the patent, with their drawing references.
FIGS. 4A-4B illustrate other examples of solid structure for packaging in accordance with one or more aspects of the disclosure. [0007] FIGs. 5-6 illustrate …
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
optical transmittance range for graphene-based member (claim range) | 10–90 | translucent graphene-based member |
optical transmittance at 10 monolayers graphene (claim embodiment) | 85–85 |
Related documents with shared materials, methods, properties, or citations.
graphene-based package
translucent thermoplastic film (inner member)
translucent graphene oxide film
thin acrylic film
thin vinyl film
polyester film
biaxially-oriented polyethylene terephthalate film
biaxially-oriented polypropylene film
polyether ether ketone film
UV-absorbing material
photochromic material
thermochromic material
second translucent thermoplastic film
aliphatic polyamide
polypropylene
polyethylene
polyurethane
polyethylene terephthalate
translucent graphene-based member |
graphene monolayer thickness (background) | 0.07–0.09 | translucent graphene-based member |
Thickness | 1–6 mm | — |
Thickness | 400–800 nm | — |
Thickness | 1–400 Å | — |
graphene-based package
translucent thermoplastic film (inner member)
translucent graphene oxide film
thin acrylic film
thin vinyl film
polyester film
biaxially-oriented polyethylene terephthalate film
biaxially-oriented polypropylene film
polyether ether ketone film
UV-absorbing material
photochromic material
thermochromic material
second translucent thermoplastic film
aliphatic polyamide
polypropylene
polyethylene
polyurethane
polyethylene terephthalate
translucent graphene-based member |
graphene monolayer thickness (background) | 0.07–0.09 | translucent graphene-based member |
Thickness | 1–6 mm | — |
Thickness | 400–800 nm | — |
Thickness | 1–400 Å | — |
graphene-based package
translucent thermoplastic film (inner member)
translucent graphene oxide film
thin acrylic film
thin vinyl film
polyester film
biaxially-oriented polyethylene terephthalate film
biaxially-oriented polypropylene film
polyether ether ketone film
UV-absorbing material
photochromic material
thermochromic material
second translucent thermoplastic film
aliphatic polyamide
polypropylene
polyethylene
polyurethane
polyethylene terephthalate
translucent graphene-based member |
graphene monolayer thickness (background) | 0.07–0.09 | translucent graphene-based member |
Thickness | 1–6 mm | — |
Thickness | 400–800 nm | — |
Thickness | 1–400 Å | — |
graphene-based package
translucent thermoplastic film (inner member)
translucent graphene oxide film
thin acrylic film
thin vinyl film
polyester film
biaxially-oriented polyethylene terephthalate film
biaxially-oriented polypropylene film
polyether ether ketone film
UV-absorbing material
photochromic material
thermochromic material
second translucent thermoplastic film
aliphatic polyamide
polypropylene
polyethylene
polyurethane
polyethylene terephthalate
translucent graphene-based member |
graphene monolayer thickness (background) | 0.07–0.09 | translucent graphene-based member |
Thickness | 1–6 mm | — |
Thickness | 400–800 nm | — |
Thickness | 1–400 Å | — |
