This research work focuses on the wetting behavior and directional motion of water droplet on the nanocone surface through molecular dynamics simulation approach. A total of five nanocones having different apex angle were utilized to observe the wetting characteristics. In addition, water droplets of different sizes based on containing number of molecules were also considered in this study. The results show that the water droplet spontaneously travels from the tip of the nanocone toward its larger diameter direction in all cases. The average velocity of water droplet on the nanocone surface with smaller apex angle was found to be higher than that with larger apex angle. Moreover, it was found that the energy parameter of the nanocone surfac...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
A surface wettability gradient can break the equilibrium status of a liquid droplet and drives its u...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
This research work focuses on the wetting behavior and directional motion of water droplet on the na...
We perform molecular dynamics simulations to demonstrate that when a nanodroplet is confined inside ...
A Molecular Dynamics (MD) technique is proposed to simulate the motion of water nanodroplets on wave...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
A surface wettability gradient can break the equilibrium status of a liquid droplet and drives its u...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
A surface wettability gradient can break the equilibrium status of a liquid droplet and drives its u...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
This research work focuses on the wetting behavior and directional motion of water droplet on the na...
We perform molecular dynamics simulations to demonstrate that when a nanodroplet is confined inside ...
A Molecular Dynamics (MD) technique is proposed to simulate the motion of water nanodroplets on wave...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
Surface functionalization has important application prospects in many aspects, for example, anti-dra...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
A surface wettability gradient can break the equilibrium status of a liquid droplet and drives its u...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...
A surface wettability gradient can break the equilibrium status of a liquid droplet and drives its u...
In this work, we investigate the dynamic advancing and receding contact angles, and the mechanisms o...