A rotary nanomotor is an essential component of a nanomachine. In the present study, a rotary nanomotor from wedged diamonds and triple-walled nanotubes was proposed with the consideration of boundary effect. The outer tubes and mid-tubes were used as nanobearing to constrain the inner tube. Several wedges of the diamond were placed near the inner tube for driving the inner tube to rotate. At a temperature lower than 300 K, the inner tube as the rotor had a stable rotational frequency (SRF). It is shown that both the rotational direction and the value of SRF of the rotor depended on the temperature and thickness of the diamond wedges. The dependence was investigated via theoretical analysis of the molecular dynamics simulation results. For ...
A thermal nanomotor is relatively easy to fabricate and regulate as it contains just a few or even n...
motion transmission system made from coaxial carbon nanotubes (CNTs) is introduced. In the system, t...
Energy exchanges between orderly intertube axial motion and vibrational modes are studied for isolat...
By bending a straight carbon nanotube and bonding both ends of the nanotube, a nanoring (or nano-whe...
By fixing of the outer tube of double-walled carbon nanotubes, a thermally driven rotary nanomotor c...
Owing to their exceptional mechanical properties, carbon nanotubes have recently emerged as promisin...
Due to the extremely small dimensions and super high frequency of the rotor in a thermally driven ro...
When argon is used as a protecting gas in the fabrication or working environment of a nanodevice, ab...
By fixing of the outer tube of double-walled carbon nanotubes, a thermally driven rotary nanomotor c...
Measuring the rotation of a rotor in a thermally driven motor made from double-wall carbon nanotubes...
In a nano rotational transmission system (RTS) which consists of a single walled carbon nanotube (SW...
We carry out a molecular dynamics study of nanobearings based on double-walled carbon nanotubes with...
In recent years, carbon-nanotube (CNT)-based gigahertz oscillators have been widely used in numerous...
In the fabrication of a thermally driven rotary nanomotor with the dimension of a few nanometers, fa...
A rotational transmission system from coaxial carbon nanotubes (CNTs) is investigated using a comput...
A thermal nanomotor is relatively easy to fabricate and regulate as it contains just a few or even n...
motion transmission system made from coaxial carbon nanotubes (CNTs) is introduced. In the system, t...
Energy exchanges between orderly intertube axial motion and vibrational modes are studied for isolat...
By bending a straight carbon nanotube and bonding both ends of the nanotube, a nanoring (or nano-whe...
By fixing of the outer tube of double-walled carbon nanotubes, a thermally driven rotary nanomotor c...
Owing to their exceptional mechanical properties, carbon nanotubes have recently emerged as promisin...
Due to the extremely small dimensions and super high frequency of the rotor in a thermally driven ro...
When argon is used as a protecting gas in the fabrication or working environment of a nanodevice, ab...
By fixing of the outer tube of double-walled carbon nanotubes, a thermally driven rotary nanomotor c...
Measuring the rotation of a rotor in a thermally driven motor made from double-wall carbon nanotubes...
In a nano rotational transmission system (RTS) which consists of a single walled carbon nanotube (SW...
We carry out a molecular dynamics study of nanobearings based on double-walled carbon nanotubes with...
In recent years, carbon-nanotube (CNT)-based gigahertz oscillators have been widely used in numerous...
In the fabrication of a thermally driven rotary nanomotor with the dimension of a few nanometers, fa...
A rotational transmission system from coaxial carbon nanotubes (CNTs) is investigated using a comput...
A thermal nanomotor is relatively easy to fabricate and regulate as it contains just a few or even n...
motion transmission system made from coaxial carbon nanotubes (CNTs) is introduced. In the system, t...
Energy exchanges between orderly intertube axial motion and vibrational modes are studied for isolat...