Data for the flow rate of water in carbon nanopores is widely scattered, both in experiments and simulations. In this work, we aim at precisely quantifying the characteristic large slip length and flow rate of water flowing in a planar graphene nanochannel. First, we quantify the slip length using the intrinsic interfacial friction coefficient between water and graphene, which is found from equilibrium molecular dynamics (EMD) simulations. We then calculate the flow rate and the slip length from the streaming velocity profiles obtained using non-equilibrium molecular dynamics (NEMD) simulations and compare with the predictions from the EMD simulations. The slip length calculated from NEMD simulations is found to be extremely sensitive to th...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
Data for the flow rate of water in carbon nanopores is widely scattered, both in experiments and sim...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...
We investigate the hydrodynamic boundary condition for simple nanofluidic systems such as argon and ...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...
Slip lengths reported from molecular dynamics (MD) simulations of water flow in graphene nanochannel...
Slip lengths reported from molecular dynamics (MD) simulations of water flow in graphene nanochannel...
The hydrodynamic boundary condition is now a subject of greater interest than ever before, even thou...
The purpose of this paper is threefold. First, we review the existing literature on flow rates of wa...
Superfast water transport discovered in graphitic nanoconduits, including carbon nanotubes and graph...
Superfast water transport discovered in graphitic nanoconduits, including carbon nanotubes and graph...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
Data for the flow rate of water in carbon nanopores is widely scattered, both in experiments and sim...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...
We investigate the hydrodynamic boundary condition for simple nanofluidic systems such as argon and ...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...
Slip lengths reported from molecular dynamics (MD) simulations of water flow in graphene nanochannel...
Slip lengths reported from molecular dynamics (MD) simulations of water flow in graphene nanochannel...
The hydrodynamic boundary condition is now a subject of greater interest than ever before, even thou...
The purpose of this paper is threefold. First, we review the existing literature on flow rates of wa...
Superfast water transport discovered in graphitic nanoconduits, including carbon nanotubes and graph...
Superfast water transport discovered in graphitic nanoconduits, including carbon nanotubes and graph...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...
We investigate the slip properties of water confined in graphite-like nanochannels by non-equilibriu...