Carbon-nanotube (CNT) -based strain sensors have the potential to overcome some of the limitations in small-scale force/displacement sensing technologies due to their small size and high sensitivity to strain. A better understanding of the dominant and limiting causes of high strain sensitivity is needed to enable the design and manufacture of high-performance sensor systems. This paper presents the theoretical framework that makes it possible to predict the strain sensitivity of a carbon nanotube based on it chiral indices (n,m). This framework is extended to capture the behavior of sensors composed of multiple CNTs in a parallel resistor network. This framework has been used to predict that a parallel resistor network of more than 100 ran...
ABSTRACT: In recent years, carbon nanotubes have been utilized for a variety of applications, includ...
The excellent electrical and mechanical properties of carbon nanotubes (CNTs) provide interesting op...
We present a strain gauge that uses a carbon nanotube (CNT) forest, partially embedded in a Parylene...
Theoretical analysis of the piezoresistive behavior of carbon nanotube (CNT)-based composites is of ...
The use of carbon nanotubes for piezoresistive strain sensors has acquired significant attention due...
Carbon nanotube yarns are micron-size fibers that contain thousands of intertwined carbon nanotubes ...
— Correlation between mechanical deformation and conductivity behaviour of free-standing membranes ...
Strain detecting with carbon nanotube (CNT) networks is one of the encouraging findings in sensor te...
In recent years, nanocomposites based on various nano-scale carbon fillers, such as carbon nanotubes...
Correlation between mechanical deformation and conductivity behaviour of free-standing membranes of ...
Carbon nanotubes (CNTs) have attracted considerable attention due to their unique electrical, mechan...
Nowadays, smart composites based on different nano-scale carbon fillers, such as carbon nanotubes (C...
A strain sensor has been fabricated from a polymer nanocomposite with multiwalled carbon nanotube (M...
The sensor characteristics of a membrane-based carbon nanotube (CNT) sensor showing maximum gauge fa...
ABSTRACT: In recent years, carbon nanotubes have been utilized for a variety of applications, includ...
The excellent electrical and mechanical properties of carbon nanotubes (CNTs) provide interesting op...
We present a strain gauge that uses a carbon nanotube (CNT) forest, partially embedded in a Parylene...
Theoretical analysis of the piezoresistive behavior of carbon nanotube (CNT)-based composites is of ...
The use of carbon nanotubes for piezoresistive strain sensors has acquired significant attention due...
Carbon nanotube yarns are micron-size fibers that contain thousands of intertwined carbon nanotubes ...
— Correlation between mechanical deformation and conductivity behaviour of free-standing membranes ...
Strain detecting with carbon nanotube (CNT) networks is one of the encouraging findings in sensor te...
In recent years, nanocomposites based on various nano-scale carbon fillers, such as carbon nanotubes...
Correlation between mechanical deformation and conductivity behaviour of free-standing membranes of ...
Carbon nanotubes (CNTs) have attracted considerable attention due to their unique electrical, mechan...
Nowadays, smart composites based on different nano-scale carbon fillers, such as carbon nanotubes (C...
A strain sensor has been fabricated from a polymer nanocomposite with multiwalled carbon nanotube (M...
The sensor characteristics of a membrane-based carbon nanotube (CNT) sensor showing maximum gauge fa...
ABSTRACT: In recent years, carbon nanotubes have been utilized for a variety of applications, includ...
The excellent electrical and mechanical properties of carbon nanotubes (CNTs) provide interesting op...
We present a strain gauge that uses a carbon nanotube (CNT) forest, partially embedded in a Parylene...