Flexible electronic circuitry is an emerging technology that will significantly impact the future of healthcare and medicine, food safety inspection, environmental monitoring, and public security. Recent advances in drop-on-demand printing technology and electrically conductive inks have enabled simple electronic circuits to be fabricated on mechanically flexible polymers, paper, and bioresorbable silk. Research has shown that graphene, and its derivative formulations, can be used to create low-cost electrically conductive inks. Graphene is a one atom thick two-dimensional layer composed of carbon atoms arranged in a hexagonal lattice forming a material with very high fracture strength, high Young's Modulus, and low electrical resistance. N...
The possibility to produce graphene oxide (rGO) device on a flexible polymeric substrate has attract...
Solution-phase printing of nanomaterial-based graphene inks are rapidly gaining interest for fabrica...
This dissertation presents methods for deposition and post-processing of Graphene-Carboxymethyl Cell...
Non-conductive graphene-oxide (GO) inks can be synthesized from inexpensive graphite powders and dep...
Non-conductive graphene oxide (GO) particles (70% carbon, 30% oxygen) synthesized directly from inex...
A rapid low-cost technology for the production of laser-scribed highly conductive reduced-graphene o...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...
The fabrication of bendable electronic devices is a scientific-technological area of very rapid adva...
The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electr...
In this thesis, a cost effective, simple and fast method of reduction of Graphene Oxide thin film is...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...
The present work reports on the detailed electro-thermal evaluation of a highly water dispersible, f...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
We present a versatile sensing platform, intended for ubiquitous and flexible electronics sensing ap...
The possibility to produce graphene oxide (rGO) device on a flexible polymeric substrate has attract...
Solution-phase printing of nanomaterial-based graphene inks are rapidly gaining interest for fabrica...
This dissertation presents methods for deposition and post-processing of Graphene-Carboxymethyl Cell...
Non-conductive graphene-oxide (GO) inks can be synthesized from inexpensive graphite powders and dep...
Non-conductive graphene oxide (GO) particles (70% carbon, 30% oxygen) synthesized directly from inex...
A rapid low-cost technology for the production of laser-scribed highly conductive reduced-graphene o...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...
The fabrication of bendable electronic devices is a scientific-technological area of very rapid adva...
The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electr...
In this thesis, a cost effective, simple and fast method of reduction of Graphene Oxide thin film is...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...
The present work reports on the detailed electro-thermal evaluation of a highly water dispersible, f...
The selective reduction of graphene oxide (GO) with direct laser writing is a rapid and efficient pr...
We present a versatile sensing platform, intended for ubiquitous and flexible electronics sensing ap...
The possibility to produce graphene oxide (rGO) device on a flexible polymeric substrate has attract...
Solution-phase printing of nanomaterial-based graphene inks are rapidly gaining interest for fabrica...
This dissertation presents methods for deposition and post-processing of Graphene-Carboxymethyl Cell...