Understanding the interfacial forces of carbon nanotubes (CNTs) is fundamental to the development of electromechanical systems based on the contact of CNTs. However, experimental studies on the adhesion properties between CNTs are scarce despite the remarkable contact quality of CNTs. Here, we present an experimental investigation of the adhesion between the top ends of aligned, self-adjusted CNTs using a CNT-integrated microelectromechanical actuator. The pull-out and pull-in behaviors of the contact as a function of the applied force by the actuator are precisely identified by measuring the contact resistance between the CNTs. The adhesion between the top ends of individual CNTs is extracted from the measured adhesive strength between the...
International audienceThe physics of adhesion of one-dimensional nano structures such as nanotubes, ...
The various excellent properties of carbon nanotubes (CNTs) are in the focus of researchers since ye...
In this paper we present results of our recent efforts to understand the mechanical interface behavi...
Carbon nanotube (CNT) is an ideal candidate for future nanoelectronics because of its small diameter...
* Abstract- Carbon nanotube (CNT) is an ideal candidate for future nanoelectronics because of its sm...
In this paper we show the importance of the interface integrity for a piezoelectric (PZT) actuator/s...
An investigation was performed to characterize the adhesive interface reinforced with a Carbon Nanot...
The adhesion and friction coupling of hierarchical carbon nanotube arrays was investigated with a hi...
The adhesion and friction at crossed nanotube junctions were investigated in ambient by using an ato...
An experimental investigation of gold coated, multi-walled carbon nanotube (CNT) surfaces was previo...
[[abstract]]A real-time and non-contact method using scanning electron microscopy is demonstrated fo...
We calculate the adhesion force between a carbon nanotube and differently shaped surfaces of a silic...
A study was performed to develop a novel technique to enhance the bond strength between a piezoelect...
Carbon-Nanotube (CNT) coated surfaces are investigated to determine theelectrical contact performanc...
Due to the unique electrical properties of carbon nanotube (CNT), CNT is often chosen as a building ...
International audienceThe physics of adhesion of one-dimensional nano structures such as nanotubes, ...
The various excellent properties of carbon nanotubes (CNTs) are in the focus of researchers since ye...
In this paper we present results of our recent efforts to understand the mechanical interface behavi...
Carbon nanotube (CNT) is an ideal candidate for future nanoelectronics because of its small diameter...
* Abstract- Carbon nanotube (CNT) is an ideal candidate for future nanoelectronics because of its sm...
In this paper we show the importance of the interface integrity for a piezoelectric (PZT) actuator/s...
An investigation was performed to characterize the adhesive interface reinforced with a Carbon Nanot...
The adhesion and friction coupling of hierarchical carbon nanotube arrays was investigated with a hi...
The adhesion and friction at crossed nanotube junctions were investigated in ambient by using an ato...
An experimental investigation of gold coated, multi-walled carbon nanotube (CNT) surfaces was previo...
[[abstract]]A real-time and non-contact method using scanning electron microscopy is demonstrated fo...
We calculate the adhesion force between a carbon nanotube and differently shaped surfaces of a silic...
A study was performed to develop a novel technique to enhance the bond strength between a piezoelect...
Carbon-Nanotube (CNT) coated surfaces are investigated to determine theelectrical contact performanc...
Due to the unique electrical properties of carbon nanotube (CNT), CNT is often chosen as a building ...
International audienceThe physics of adhesion of one-dimensional nano structures such as nanotubes, ...
The various excellent properties of carbon nanotubes (CNTs) are in the focus of researchers since ye...
In this paper we present results of our recent efforts to understand the mechanical interface behavi...