For over five decades, molecular dynamics (MD) simulations have helped to elucidate critical mechanisms in a broad range of physiological systems and technological innovations. MD simulations are synergetic with experiments, relying on measurements to calibrate their parameters and probing "what if scenarios" for systems that are difficult to investigate experimentally. However, in certain systems, such as nanofluidics, the results of experiments and MD simulations differ by several orders of magnitude. This discrepancy may be attributed to the spatiotemporal scales and structural information accessible by experiments and simulations. Furthermore, MD simulations rely on parameters that are often calibrated semiempirically, while the effects...
Using a purpose built molecular dynamics (MD) code. we simulate a range of infinite and finite lengt...
Confined water can have properties dramatically different from bulk water, and these properties can ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
Abstract: For over five decades, molecular dynamics (MD) simulations have helped to elucidate critic...
For over five decades, molecular dynamics (MD) simulations have helped to elucidate critical mechani...
We present a procedure for using molecular dynamics (MD) simulations to provide essential fluid and ...
We present nonequilibrium molecular dynamics (MD) simulations of liquid flow past a carbon nanotube ...
A complete understanding of the most common and abundant fluid on Earth, water, has challenged the s...
Slip lengths reported from molecular dynamics (MD) simulations of water flow in graphene nanochannel...
Graphitic nanoscale allotropes such as graphene and carbon nanotubes have inspired science and engin...
Molecular Dynamics (MD) simulation is one of the most important computational techniques with broad ...
Molecular Dynamics (MD) is an important tool to simulate flows at the nanoscale. The limitation of M...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...
Molecular dynamics (MD) is a computational tool used to study physical systems by modeling the atomi...
Molecular dynamics simulations of liquid water at ambient conditions, adsorbed at the external walls...
Using a purpose built molecular dynamics (MD) code. we simulate a range of infinite and finite lengt...
Confined water can have properties dramatically different from bulk water, and these properties can ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
Abstract: For over five decades, molecular dynamics (MD) simulations have helped to elucidate critic...
For over five decades, molecular dynamics (MD) simulations have helped to elucidate critical mechani...
We present a procedure for using molecular dynamics (MD) simulations to provide essential fluid and ...
We present nonequilibrium molecular dynamics (MD) simulations of liquid flow past a carbon nanotube ...
A complete understanding of the most common and abundant fluid on Earth, water, has challenged the s...
Slip lengths reported from molecular dynamics (MD) simulations of water flow in graphene nanochannel...
Graphitic nanoscale allotropes such as graphene and carbon nanotubes have inspired science and engin...
Molecular Dynamics (MD) simulation is one of the most important computational techniques with broad ...
Molecular Dynamics (MD) is an important tool to simulate flows at the nanoscale. The limitation of M...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...
Molecular dynamics (MD) is a computational tool used to study physical systems by modeling the atomi...
Molecular dynamics simulations of liquid water at ambient conditions, adsorbed at the external walls...
Using a purpose built molecular dynamics (MD) code. we simulate a range of infinite and finite lengt...
Confined water can have properties dramatically different from bulk water, and these properties can ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...