Magneto-rheological gel (MRG) has been the subject of recent research due to its versatile applications. Especially, the magneto-induced electrical properties of MRGs under different levels of magnetic field enables them to be used as magneto-sensors. However, conventional MRG shows a low level of electrical conductivity, complicating its use in sensor applications. In this regard, in the present study, the carbon nanotube (CNT) and graphene oxide (GO) are added to fabricate new types of MRG. Herein, four different MRG samples were fabricated with reference to an amount of CNT and GO. The microstructural images of carbonyl iron powder (CIP)-based chain structures with CNT and GO were observed using SEM images. Then, their magneto-induced el...
In this paper, we propose strain-sensitive thin films based on chemically reduced graphene oxide (GO...
Electrical and electromechanical properties of hybrid graphene nanoplatelet (GNP)/carbon nanotube (C...
The effect of different types of multiwall carbon nanotubes (MWCNTs) on the morphological, magnetic ...
Magneto-rheological gel (MRG) has been the subject of recent research due to its versatile applicati...
Magnetoresistance (MR) refers to the change of a material’s electrical resistance under the presence...
The conductive polymeric composites incorporating carbon nanotube (CNT) and carbonyl iron powder (CI...
This work reports on a novel magnetorheological polymer gel with carbon nanotubes and carbonyl iron ...
Common sensors in many applications are in the form of rigid devices that can react according to ext...
Cobalt and iron nanoparticles are doped in carbon nanotube (CNT)/polymer matrix composites and studi...
Recently, due to the unique structure and extraordinary electrical properties, graphene has been app...
The remarkable electrical and mechanical properties of carbon nanotubes (CNTs) render CNT-reinforced...
Magneto-rheological fluids are materials that exhibit a significant change in their rheological prop...
Permission is hereby granted to the University of Alberta Libraries to reproduce single copies of th...
The transition towards renewable energy sources necessitates efficient energy storage systems to mee...
The overall goals of the present PhD research are to explore the giant magnetoimpedance (GMI) and gi...
In this paper, we propose strain-sensitive thin films based on chemically reduced graphene oxide (GO...
Electrical and electromechanical properties of hybrid graphene nanoplatelet (GNP)/carbon nanotube (C...
The effect of different types of multiwall carbon nanotubes (MWCNTs) on the morphological, magnetic ...
Magneto-rheological gel (MRG) has been the subject of recent research due to its versatile applicati...
Magnetoresistance (MR) refers to the change of a material’s electrical resistance under the presence...
The conductive polymeric composites incorporating carbon nanotube (CNT) and carbonyl iron powder (CI...
This work reports on a novel magnetorheological polymer gel with carbon nanotubes and carbonyl iron ...
Common sensors in many applications are in the form of rigid devices that can react according to ext...
Cobalt and iron nanoparticles are doped in carbon nanotube (CNT)/polymer matrix composites and studi...
Recently, due to the unique structure and extraordinary electrical properties, graphene has been app...
The remarkable electrical and mechanical properties of carbon nanotubes (CNTs) render CNT-reinforced...
Magneto-rheological fluids are materials that exhibit a significant change in their rheological prop...
Permission is hereby granted to the University of Alberta Libraries to reproduce single copies of th...
The transition towards renewable energy sources necessitates efficient energy storage systems to mee...
The overall goals of the present PhD research are to explore the giant magnetoimpedance (GMI) and gi...
In this paper, we propose strain-sensitive thin films based on chemically reduced graphene oxide (GO...
Electrical and electromechanical properties of hybrid graphene nanoplatelet (GNP)/carbon nanotube (C...
The effect of different types of multiwall carbon nanotubes (MWCNTs) on the morphological, magnetic ...