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Laser patterned, high-power graphene paper resistor with dual temperature coefficient of resistance

Authors :
Kapil Bhatt
Sandeep Kumar
Chandra Charu Tripathi
Sandeep Sharma
Amit Kumar
Pramod Kumar
Source :
RSC advances. 9(15)
Publication Year :
2018

Abstract

Printing of electronic devices on a paper substrate using 2D graphene-based ink is an opening gate to innovative applications, where devices would be biodegradable, eco-friendly and can be disposed of with negligible impact on the environment. A resistor is a key element of electronic devices and their application area depends upon its power rating and temperature coefficient of resistance (TCR). In this work, in house developed graphene ink is successfully utilized to fabricate a paper-based resistor using a bar coating technique. Dimensional patterning with precise known values of resistance is achieved using a laser with freedom of shape and size which has been explored for the first time on a paper substrate. The resistor has potential to handle ∼7 W power at room temperature with capacity to withstand up to 200 V which is the highest among reported printed resistors. A dual, low and high TCR is observed, correspondingly in cold (173 K to 300 K) and hot (300 K to 373 K) temperature regions with an activation energy Ea of ∼8 meV for the cold region which is 375 percent lower than the hot region (∼30 meV). The dual TCR behaviour is of great importance for application as a stable resistor up to room temperature, and as a thermistor above room temperature.

Details

ISSN :
20462069
Volume :
9
Issue :
15
Database :
OpenAIRE
Journal :
RSC advances
Accession number :
edsair.doi.dedup.....97ce2189d706630fc59828372eb84d96