Research paper
Experimental CharacterizationEach sample groups how it was prepared, characterized, and measured. Click a card to expand.
4 preparations2 characterizations
4 preparations2 characterizations
1 characterization
1 characterization
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APPARATUS AND METHOD FOR TREATING GRAPHENE USING PLASMA AND APPLICATION THEREOF
Method of Fabricating Graphene-Based/Algal Biofilm Electrode for Application in a Biophotovoltaic Device
Engineering of SnO2–Graphene Oxide Nano-Heterojunctions for Selective Room-temperature Chemical Sensing and Optoelectronic Devices
DISPLAY METHOD OF MULTI-PRIMARY COLOR GRAPHENE DISPLAY DEVICE
CONDUCTIVE THIN FILM AND TRANSPARENT ELECTRODE INCLUDING GRAPHENE OXIDE AND CARBON NANOTUBE, AND METHODS OF PRODUCING THE SAME
Laser Direct Patterning of Reduced-Graphene Oxide Transparent Circuit
Nocturnal Eye-Inspired Liquid-to-Gas Phase Change Soft Actuator with Laser-Induced Graphene: Enhanced Environmental Light Harvesting and Photothermal Conversion
PROCESS FOR PRODUCING GRAPHENE OXIDE PRODUCTS AND USES THEREOF
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
4 preparations2 characterizations
4 preparations2 characterizations
1 characterization
1 characterization
Related documents with shared materials, methods, properties, or citations.
APPARATUS AND METHOD FOR TREATING GRAPHENE USING PLASMA AND APPLICATION THEREOF
Method of Fabricating Graphene-Based/Algal Biofilm Electrode for Application in a Biophotovoltaic Device
Engineering of SnO2–Graphene Oxide Nano-Heterojunctions for Selective Room-temperature Chemical Sensing and Optoelectronic Devices
DISPLAY METHOD OF MULTI-PRIMARY COLOR GRAPHENE DISPLAY DEVICE
CONDUCTIVE THIN FILM AND TRANSPARENT ELECTRODE INCLUDING GRAPHENE OXIDE AND CARBON NANOTUBE, AND METHODS OF PRODUCING THE SAME
Laser Direct Patterning of Reduced-Graphene Oxide Transparent Circuit
Nocturnal Eye-Inspired Liquid-to-Gas Phase Change Soft Actuator with Laser-Induced Graphene: Enhanced Environmental Light Harvesting and Photothermal Conversion
PROCESS FOR PRODUCING GRAPHENE OXIDE PRODUCTS AND USES THEREOF
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
4 preparations2 characterizations
4 preparations2 characterizations
1 characterization
1 characterization
Related documents with shared materials, methods, properties, or citations.
APPARATUS AND METHOD FOR TREATING GRAPHENE USING PLASMA AND APPLICATION THEREOF
Method of Fabricating Graphene-Based/Algal Biofilm Electrode for Application in a Biophotovoltaic Device
Engineering of SnO2–Graphene Oxide Nano-Heterojunctions for Selective Room-temperature Chemical Sensing and Optoelectronic Devices
DISPLAY METHOD OF MULTI-PRIMARY COLOR GRAPHENE DISPLAY DEVICE
CONDUCTIVE THIN FILM AND TRANSPARENT ELECTRODE INCLUDING GRAPHENE OXIDE AND CARBON NANOTUBE, AND METHODS OF PRODUCING THE SAME
Laser Direct Patterning of Reduced-Graphene Oxide Transparent Circuit
Nocturnal Eye-Inspired Liquid-to-Gas Phase Change Soft Actuator with Laser-Induced Graphene: Enhanced Environmental Light Harvesting and Photothermal Conversion
PROCESS FOR PRODUCING GRAPHENE OXIDE PRODUCTS AND USES THEREOF
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
4 preparations2 characterizations
4 preparations2 characterizations
1 characterization
1 characterization
Related documents with shared materials, methods, properties, or citations.
APPARATUS AND METHOD FOR TREATING GRAPHENE USING PLASMA AND APPLICATION THEREOF
Method of Fabricating Graphene-Based/Algal Biofilm Electrode for Application in a Biophotovoltaic Device
Engineering of SnO2–Graphene Oxide Nano-Heterojunctions for Selective Room-temperature Chemical Sensing and Optoelectronic Devices
DISPLAY METHOD OF MULTI-PRIMARY COLOR GRAPHENE DISPLAY DEVICE
CONDUCTIVE THIN FILM AND TRANSPARENT ELECTRODE INCLUDING GRAPHENE OXIDE AND CARBON NANOTUBE, AND METHODS OF PRODUCING THE SAME
Laser Direct Patterning of Reduced-Graphene Oxide Transparent Circuit
Nocturnal Eye-Inspired Liquid-to-Gas Phase Change Soft Actuator with Laser-Induced Graphene: Enhanced Environmental Light Harvesting and Photothermal Conversion
PROCESS FOR PRODUCING GRAPHENE OXIDE PRODUCTS AND USES THEREOF