The field of printable electronics has been experiencing increased interest and growth to meet the demands of low-cost, flexible, and lightweight devices. From this subset of devices, graphene-based printable sensors are of specific interest due to their transparency, flexibility, biocompatibility, and high conductivity. In this research, a graphene-based ink is formulated and developed with the goal of having it exhibit characteristics that are suitable for a sensor, namely being electrically conductive, easily manufacturable, and printable through an inkjet-based printer. Based on the ink formulation methodologies presented in the journals Carbon and The Journal of Physical Chemistry Letters by Parvez et al. and Secor et al., respectively...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
Highly conductive pristine graphene electrodes were fabricated by inkjet printing using ethyl cellul...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...
The field of printable electronics and sensors has been experiencing increased interest and growth t...
Master of ScienceDepartment of Industrial & Manufacturing Systems EngineeringSuprem R. DasThe outsta...
Aerosol jet printing is a noncontact, digital, additive manufacturing technique compatible with a wi...
Printed electronic sensors offer a breakthrough in the availability of low-cost sensor devices for i...
With the advent of flexible electronics, the old fashioned and conventional solid-state technology w...
With the advent of flexible electronics, the old fashioned and conventional solid-state technology w...
Graphene-based printable inks are advanced and promising candidates for flexible printed electronic ...
Highly conductive pristine graphene electrodes were fabricated by inkjet printing using ethyl cellul...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
We report the exfoliation of graphite in aqueous solutions under high shear rate [∼ 108 s-1] turbule...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
Highly conductive pristine graphene electrodes were fabricated by inkjet printing using ethyl cellul...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...
The field of printable electronics and sensors has been experiencing increased interest and growth t...
Master of ScienceDepartment of Industrial & Manufacturing Systems EngineeringSuprem R. DasThe outsta...
Aerosol jet printing is a noncontact, digital, additive manufacturing technique compatible with a wi...
Printed electronic sensors offer a breakthrough in the availability of low-cost sensor devices for i...
With the advent of flexible electronics, the old fashioned and conventional solid-state technology w...
With the advent of flexible electronics, the old fashioned and conventional solid-state technology w...
Graphene-based printable inks are advanced and promising candidates for flexible printed electronic ...
Highly conductive pristine graphene electrodes were fabricated by inkjet printing using ethyl cellul...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
We report the exfoliation of graphite in aqueous solutions under high shear rate [∼ 108 s-1] turbule...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
The inkjet printing of graphene is a cost-effective, and versatile deposition technique for both tra...
Highly conductive pristine graphene electrodes were fabricated by inkjet printing using ethyl cellul...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...