Wearable sensor technologies, especially continuous monitoring of various human health conditions, are attracting increased attention. However, current rigid sensors present obvious drawbacks, like lower durability and poor comfort. Here, a strategy is proposed to efficiently yield wearable sensors using cotton fabric as an essential component, and conductive materials conformally coat onto the cotton fibers, leading to a highly electrically conductive interconnecting network. To improve the conductivity and durability of conductive coatings, a topographical modification approach is developed with genus-3 and genus-5 structures, and topological genus structures enable cage metallic seeds on the surface of substrates. A textile-based capacit...
Wearable electronics offer the combined advantages of both electronics and fabrics. In this article,...
Wearable sensors attract significant attention due to their potential applications especially in per...
Electronic textiles (e-textiles) are an emerging technology comprised of electronic circuit systems ...
Wearable sensor technologies, especially continuous monitoring of various human health conditions, a...
Two dimensional (2D) materials are a rapidly growing area of interest for wearable electronics, due ...
Highly durable, flexible, and even washable multilayer electronic circuitry can be constructed on te...
An exciting new direction for ubiquitous computing that has emerged in recent years is the ability t...
The focus of much previous research and development in electronic textiles has been on remote sensin...
Capacitive sensing is used in manufacturing E-textiles for touch and proximity-sensing applications....
This paper reviews some prominent applications and approaches to developing smart fabrics for wearab...
To demonstrate the wearable flexible/stretchable health-monitoring sensor, it is necessary to develo...
Capacitive biosensors are an emerging technology revolutionizing wearable sensing systems and person...
Conductive cotton fabric was prepared by coating single-wall carbon nanotubes (CNTs) on a knitted co...
In this work, we report a class of fabric-like flexible and wearable capacitive sensors utilizing el...
Smart textiles have recently aroused tremendous interests over the world because of their broad appl...
Wearable electronics offer the combined advantages of both electronics and fabrics. In this article,...
Wearable sensors attract significant attention due to their potential applications especially in per...
Electronic textiles (e-textiles) are an emerging technology comprised of electronic circuit systems ...
Wearable sensor technologies, especially continuous monitoring of various human health conditions, a...
Two dimensional (2D) materials are a rapidly growing area of interest for wearable electronics, due ...
Highly durable, flexible, and even washable multilayer electronic circuitry can be constructed on te...
An exciting new direction for ubiquitous computing that has emerged in recent years is the ability t...
The focus of much previous research and development in electronic textiles has been on remote sensin...
Capacitive sensing is used in manufacturing E-textiles for touch and proximity-sensing applications....
This paper reviews some prominent applications and approaches to developing smart fabrics for wearab...
To demonstrate the wearable flexible/stretchable health-monitoring sensor, it is necessary to develo...
Capacitive biosensors are an emerging technology revolutionizing wearable sensing systems and person...
Conductive cotton fabric was prepared by coating single-wall carbon nanotubes (CNTs) on a knitted co...
In this work, we report a class of fabric-like flexible and wearable capacitive sensors utilizing el...
Smart textiles have recently aroused tremendous interests over the world because of their broad appl...
Wearable electronics offer the combined advantages of both electronics and fabrics. In this article,...
Wearable sensors attract significant attention due to their potential applications especially in per...
Electronic textiles (e-textiles) are an emerging technology comprised of electronic circuit systems ...