The complex structure of the macroscopic assemblies of carbon nanotubes and variable intrinsic piezoresistivity of nanotubes themselves lead to highly interesting piezoresistive performance of this new type of conductive material. Here, we present an in-depth study of the piezoresistive effect in carbon nanotube fibers, <i>i.e.</i>, yarnlike assemblies made purely of aligned carbon nanotubes, which are expected to find applications as electrical and electronic materials. The resistivity changes of carbon nanotube fibers were measured on initial loading, through the elastic/plastic transition, on cyclic loading and on stress relaxation. The various regimes of stress/strain behavior were modeled using a standard linear solid model, which was ...
Carbon nanopapers made of carbon nanotubes (CNTs) or carbon nanofibers (CNFs), possess unique electr...
Correlation between mechanical deformation and conductivity behaviour of free-standing membranes of ...
Carbon nanotube yarns are micron-scale fibers comprised by tens of thousands of carbon nanotubes in ...
Carbon nanotube yarns have extraordinary mechanical, electrical and thermal properties that make the...
Carbon nanotube (CNT) yarns are fiber-like materials that exhibit excellent mechanical, electrical a...
Nanocomposites are prominent candidates to extend the capabilities in areas of established fiber rei...
The fabrication of piezoresistive strain sensor with unified and balanced properties of high sensiti...
Theoretical analysis of the piezoresistive behavior of carbon nanotube (CNT)-based composites is of ...
Cementitious composites usually work under moisture condition. Presently, the piezoresistivity of ce...
International audienceMulti-walled carbon nanotube (MWCNT)/elastomer composites exhibit a piezoresis...
Tuning nonmonotonic piezoresistive materials to detect motions within certain strain limits remains ...
— 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...
This article reports on the piezoresistive behaviour of polymer-based nanocomposites, which are comp...
Due to the matrix viscosity, polyamide composites take on the obvious strain rate sensitivity that a...
Carbon nanopapers made of carbon nanotubes (CNTs) or carbon nanofibers (CNFs), possess unique electr...
Correlation between mechanical deformation and conductivity behaviour of free-standing membranes of ...
Carbon nanotube yarns are micron-scale fibers comprised by tens of thousands of carbon nanotubes in ...
Carbon nanotube yarns have extraordinary mechanical, electrical and thermal properties that make the...
Carbon nanotube (CNT) yarns are fiber-like materials that exhibit excellent mechanical, electrical a...
Nanocomposites are prominent candidates to extend the capabilities in areas of established fiber rei...
The fabrication of piezoresistive strain sensor with unified and balanced properties of high sensiti...
Theoretical analysis of the piezoresistive behavior of carbon nanotube (CNT)-based composites is of ...
Cementitious composites usually work under moisture condition. Presently, the piezoresistivity of ce...
International audienceMulti-walled carbon nanotube (MWCNT)/elastomer composites exhibit a piezoresis...
Tuning nonmonotonic piezoresistive materials to detect motions within certain strain limits remains ...
— 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...
This article reports on the piezoresistive behaviour of polymer-based nanocomposites, which are comp...
Due to the matrix viscosity, polyamide composites take on the obvious strain rate sensitivity that a...
Carbon nanopapers made of carbon nanotubes (CNTs) or carbon nanofibers (CNFs), possess unique electr...
Correlation between mechanical deformation and conductivity behaviour of free-standing membranes of ...
Carbon nanotube yarns are micron-scale fibers comprised by tens of thousands of carbon nanotubes in ...