Textile electrodes are highly desirable for wearable electronics as they offer light-weight, flexibility, cost effectiveness and ease of fabrication. Here, we propose the use of lyocell fabric as a flexible textile electrode because of its inherently super hydrophilic characteristics and increased moisture uptake. A highly concentrated colloidal solution of graphene oxide nanosheets (GONs) was coated on to lyocell fabric and was then reduced in to graphene nanosheets (GNs) using facile chemical reduction method. The proposed textile electrode has a very high surface conductivity with a very low value of surface resistance of only 40 Omega sq(-1), importantly without use of any binding or adhesive material in the processing step. Atomic forc...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...
Textile electrodes are highly desirable for wearable electronics as they offer light-weight, flexibi...
A cost effective electrically conductive textile for large scale applications would revolutionise nu...
© 2020 American Chemical Society In this work, we describe an eco-friendly and cost-efficient method...
This study reports the preparation of highly flexible and conductive fabrics containing zinc oxide (...
This study reports the preparation of highly flexible and conductive fabrics containing zinc oxide (...
Graphene-based textiles have shown promise for next generation wearable electronic applications due ...
This study reports the preparation of highly flexible and conductive fabrics containing zinc oxide (...
In this study, polyamide monofilament yarn of 3000 tex was coated with graphene oxide (GO) nanomater...
Transparent and flexible electrodes are widely used on a variety of substrates such as plastics and ...
In this work, we describe an eco-friendly and cost-efficient method for the production of highly dis...
Smart textile is a term referring to the textiles that could interact with their environment, receiv...
Graphene-based wearable e-textiles are considered to be promising due to their advantages over tradi...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...
Textile electrodes are highly desirable for wearable electronics as they offer light-weight, flexibi...
A cost effective electrically conductive textile for large scale applications would revolutionise nu...
© 2020 American Chemical Society In this work, we describe an eco-friendly and cost-efficient method...
This study reports the preparation of highly flexible and conductive fabrics containing zinc oxide (...
This study reports the preparation of highly flexible and conductive fabrics containing zinc oxide (...
Graphene-based textiles have shown promise for next generation wearable electronic applications due ...
This study reports the preparation of highly flexible and conductive fabrics containing zinc oxide (...
In this study, polyamide monofilament yarn of 3000 tex was coated with graphene oxide (GO) nanomater...
Transparent and flexible electrodes are widely used on a variety of substrates such as plastics and ...
In this work, we describe an eco-friendly and cost-efficient method for the production of highly dis...
Smart textile is a term referring to the textiles that could interact with their environment, receiv...
Graphene-based wearable e-textiles are considered to be promising due to their advantages over tradi...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...
© 2017 American Chemical Society. Graphene-based wearable e-textiles are considered to be promising ...