Ultrathin, transparent and flexible capacitors using graphene as the bottom electrodes were directly fabricated on polyethylene naphthalate (PEN) substrates. ZrO2 dielectric films were deposited on the treated surface of graphene by atomic layer deposition (ALD). The deposition process did not introduce any detectible defects in the graphene, as indicated by Raman measurements, guaranteeing the electrical performances of the graphene electrodes. The Aluminum-doped zinc oxide (AZO) films were prepared as the top electrodes using the ALD technique. The capacitors presented a high capacitance density (10.3 fF/μm2 at 10 kHz) and a relatively low leakage current (5.3 × 10−6 A/cm2 at 1 V). Bending tests revealed that the capacitors were able to w...
Transparency has never been integrated into freestanding flexible graphene paper (FF-GP), although F...
We have prepared flexible, transparent, dielectric capacitors by spraycasting very thin networks of ...
Mechanically flexible and optically transparent thin film solid state supercapacitors are fabricated...
Ultrathin, transparent and flexible capacitors using graphene as the bottom electrodes were directly...
In this study, graphene-based supercapacitors with optical transparency and mechanical flexibility h...
We have devised a dielectric film with a chemical vapor deposited graphene interlayer and studied th...
We have devised a dielectric film with a chemical vapor deposited graphene interlayer and studied th...
Fabrication of a transparent and flexible supercapacitor requires electrode materials that are optic...
Graphene, with its excellent electrical, mechanical, and optical properties, has emerged as an excep...
In this study, graphene-based supercapacitors with optical transparency and mechanical flexibility h...
Graphene, with its excellent electrical, mechanical, and optical properties, has emerged as an excep...
This paper reports the development of an efficient method to produce transparent conductive graphene...
Simple and easily integrated design of flexible and transparent electrode materials affixed to polym...
Thin-film supercapacitors are promising candidates for energy storage in wearable electronics due to...
In this study, graphene-based supercapacitors with optical transparency and mechanical flexibility h...
Transparency has never been integrated into freestanding flexible graphene paper (FF-GP), although F...
We have prepared flexible, transparent, dielectric capacitors by spraycasting very thin networks of ...
Mechanically flexible and optically transparent thin film solid state supercapacitors are fabricated...
Ultrathin, transparent and flexible capacitors using graphene as the bottom electrodes were directly...
In this study, graphene-based supercapacitors with optical transparency and mechanical flexibility h...
We have devised a dielectric film with a chemical vapor deposited graphene interlayer and studied th...
We have devised a dielectric film with a chemical vapor deposited graphene interlayer and studied th...
Fabrication of a transparent and flexible supercapacitor requires electrode materials that are optic...
Graphene, with its excellent electrical, mechanical, and optical properties, has emerged as an excep...
In this study, graphene-based supercapacitors with optical transparency and mechanical flexibility h...
Graphene, with its excellent electrical, mechanical, and optical properties, has emerged as an excep...
This paper reports the development of an efficient method to produce transparent conductive graphene...
Simple and easily integrated design of flexible and transparent electrode materials affixed to polym...
Thin-film supercapacitors are promising candidates for energy storage in wearable electronics due to...
In this study, graphene-based supercapacitors with optical transparency and mechanical flexibility h...
Transparency has never been integrated into freestanding flexible graphene paper (FF-GP), although F...
We have prepared flexible, transparent, dielectric capacitors by spraycasting very thin networks of ...
Mechanically flexible and optically transparent thin film solid state supercapacitors are fabricated...