Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Water Permeation through Conical Nanopores: Complex Interplay between Surface Roughness and Chemistry

View through CrossRef
AbstractInspired by biological water channels (e.g., aquaporin with an hourglass shape), there is a growing interest in the use of conical nanopores for water purification; however, the surface roughness of conical nanopores has not been considered in the literature. In this work, a molecular dynamics simulation study is conducted to investigate water permeation through conical nanopores by considering both surface roughness and chemistry. In hydrophilic alumina nanopores, water permeability is found to increase with increasing surface roughness; however, a reverse trend is observed in hydrophobic carbon nanopores. Comprehensive microscopic analysis reveals that surface roughness in the carbon nanopores induces multiple high‐energy barriers and frequent forming/breaking of hydrogen bonding network, which impedes water permeation. In the alumina nanopores, water becomes more bulk‐like with increasing surface roughness, thus enhancing water permeation. The molecular insights from this simulation study provide quantitative understanding of water permeation in hydrophilic and hydrophobic conical nanopores and unravel the complex interplay between surface roughness and chemistry, facilitating the design of new materials for water purification.
Title: Water Permeation through Conical Nanopores: Complex Interplay between Surface Roughness and Chemistry
Description:
AbstractInspired by biological water channels (e.
g.
, aquaporin with an hourglass shape), there is a growing interest in the use of conical nanopores for water purification; however, the surface roughness of conical nanopores has not been considered in the literature.
In this work, a molecular dynamics simulation study is conducted to investigate water permeation through conical nanopores by considering both surface roughness and chemistry.
In hydrophilic alumina nanopores, water permeability is found to increase with increasing surface roughness; however, a reverse trend is observed in hydrophobic carbon nanopores.
Comprehensive microscopic analysis reveals that surface roughness in the carbon nanopores induces multiple high‐energy barriers and frequent forming/breaking of hydrogen bonding network, which impedes water permeation.
In the alumina nanopores, water becomes more bulk‐like with increasing surface roughness, thus enhancing water permeation.
The molecular insights from this simulation study provide quantitative understanding of water permeation in hydrophilic and hydrophobic conical nanopores and unravel the complex interplay between surface roughness and chemistry, facilitating the design of new materials for water purification.

Related Results

Solid state nanopores for sensing and energy applications
Solid state nanopores for sensing and energy applications
Nanopores artificiels pour la détection et la production d’énergie Les dispositifs à nanopores sont une technologie émergente basée sur le transport de molécules, d...
Ion Transport, Current–noise in Nanopores and Conical Nanopores
Ion Transport, Current–noise in Nanopores and Conical Nanopores
Abstract In this paper, we build an ion transport model that requires less computational cost. We study the ion transport firstly in conical nanopores. We study the current-time in...
Solid-state nanopores and nanochannels for the detection of biomolecules
Solid-state nanopores and nanochannels for the detection of biomolecules
Solid-state nanopores and nanochannels are a powerful detection platform for biomolecule sensing. The confined space inside the nanopores and their ability to be functionalized mak...
Multi-Scale Reserve Estimation of Shale Plays
Multi-Scale Reserve Estimation of Shale Plays
Source rocks, such as, organic-rich shale formations have multi-scale pore structure with nano-scale features contributing to hydrocarbons storage. These hydrocarbons are divided a...
Water Trash Collector
Water Trash Collector
In today day to day life, approximately 71% of the Earth's surface is covered by Without affecting significant role that technology plays in our modern world, environmental and wat...
Co-permeation of hydrogen isotopes in tungsten at high temperatures
Co-permeation of hydrogen isotopes in tungsten at high temperatures
The permeation behavior of hydrogen (H2)–deuterium (D2) mixtures with varying molar ratios through tungsten (W) was systematically investigated using the gas-driven permeation meth...
Conception d'un nanopore unique pour mimer un canal biologique et pour la détection de bio-macromolécules
Conception d'un nanopore unique pour mimer un canal biologique et pour la détection de bio-macromolécules
Un nanopore artificiel est une ouverture de taille nanométrique faite dans un film mince synthétique (polymère ou inorganique). Un nanopore unique peut être considéré comme l’éléme...

Back to Top