Interfacial water is ubiquitous, and its investigation has attracted the interest of many for both fundamental and applied purposes. This perspective provides a few highlights concerning how molecular and sometimes multi-scale investigations on the properties of interfacial water could be of practical relevance for the energy sector. The discussion focuses on the transport of electrolytes through narrow pores, and on the solubility and transport properties of confined hydrocarbons, with particular attention in attempting to describe how interfacial water can affect such properties, especially within narrow pores. Recent results on the self-assembly of surfactants on heterogeneous surfaces are also briefly discussed. Finally, a few possible ...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
Molecular-scale knowledge of the thermodynamic, structural, and transport properties of water confin...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...
Interfacial water is believed to determine practical outcomes in systems of interest to biology, mat...
Undoubtedly, water is the most abundant and important molecular liquid and is likely the most necess...
Water, because of its fundamental role in biology, geology, and many industrial applications and its...
Water, because of its fundamental role in biology, geology, and many industrial applications and its...
Water is the most abundant molecule on earth, indispensable for a plethora of chemical reactions and...
Journal ArticleFundamental aspects of interfacial phenomena in aqueous systems are determined by the...
The ubiquity of aqueous solutions in contact with charged surfaces and the realization that the mole...
Understanding the structure and dynamics of molecularly thin films or the state of water confined to...
The interfaces of neat water and aqueous solutions play a prominent role in many technological proce...
Thesis (Ph.D.)--University of Washington, 2015The electrical properties of interfacial water [1] wer...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
Molecular-scale knowledge of the thermodynamic, structural, and transport properties of water confin...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...
Interfacial water is believed to determine practical outcomes in systems of interest to biology, mat...
Undoubtedly, water is the most abundant and important molecular liquid and is likely the most necess...
Water, because of its fundamental role in biology, geology, and many industrial applications and its...
Water, because of its fundamental role in biology, geology, and many industrial applications and its...
Water is the most abundant molecule on earth, indispensable for a plethora of chemical reactions and...
Journal ArticleFundamental aspects of interfacial phenomena in aqueous systems are determined by the...
The ubiquity of aqueous solutions in contact with charged surfaces and the realization that the mole...
Understanding the structure and dynamics of molecularly thin films or the state of water confined to...
The interfaces of neat water and aqueous solutions play a prominent role in many technological proce...
Thesis (Ph.D.)--University of Washington, 2015The electrical properties of interfacial water [1] wer...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
Molecular-scale knowledge of the thermodynamic, structural, and transport properties of water confin...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...