Knowledge of the structure of interfacial water molecules at electrified solid materials is the first step toward a better understanding of important processes at such surfaces, in, e.g., electrochemistry, atmospheric chemistry, and membrane biophysics. As graphene is an interesting material with multiple potential applications such as in transistors or sensors, we specifically investigate the graphene-water interface. We use sum-frequency generation spectroscopy to investigate the pH- and potential-dependence of the interfacial water structure in contact with a chemical vapor deposited (CVD) grown graphene surface. Our results show that the SFG signal from the interfacial water molecules at the graphene layer is dominated by the underlying...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
Water is an integral component in electrochemistry, in the generation of the electric double layer, ...
Understanding the wettability of graphene is the crucial step toward the design and control of graph...
Knowledge of the structure of interfacial water molecules at electrified solid materials is the firs...
Knowledge of the structure of interfacial water molecules at electrified solid materials is the firs...
© 2021 Elsevier Inc.Understanding the wettability of graphene is important for various applications,...
Molecular-level insight into interfacial water at a buried electrode interface is essential in elect...
The structure of interfacial water near suspended graphene electrodes in contact with aqueous soluti...
AbstractIn order to exploit the potential of graphene in next-generation devices, such as supercapac...
In order to exploit the potential of graphene in next-generation devices, such as supercapacitors, r...
We have studied how water modifies the surface of graphene and in particular how the surface conduct...
We report the wetting behavior of graphitic surface−water interfaces through the calculation of the ...
In this issue of Chem, Paesani and co-workers present a computational analysis of sum-frequency gene...
The characterization of ionic liquids near neutral and charged graphene surfaces was performed using...
We report that the conductance of graphene is influenced by intercalated water layers using current ...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
Water is an integral component in electrochemistry, in the generation of the electric double layer, ...
Understanding the wettability of graphene is the crucial step toward the design and control of graph...
Knowledge of the structure of interfacial water molecules at electrified solid materials is the firs...
Knowledge of the structure of interfacial water molecules at electrified solid materials is the firs...
© 2021 Elsevier Inc.Understanding the wettability of graphene is important for various applications,...
Molecular-level insight into interfacial water at a buried electrode interface is essential in elect...
The structure of interfacial water near suspended graphene electrodes in contact with aqueous soluti...
AbstractIn order to exploit the potential of graphene in next-generation devices, such as supercapac...
In order to exploit the potential of graphene in next-generation devices, such as supercapacitors, r...
We have studied how water modifies the surface of graphene and in particular how the surface conduct...
We report the wetting behavior of graphitic surface−water interfaces through the calculation of the ...
In this issue of Chem, Paesani and co-workers present a computational analysis of sum-frequency gene...
The characterization of ionic liquids near neutral and charged graphene surfaces was performed using...
We report that the conductance of graphene is influenced by intercalated water layers using current ...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
Water is an integral component in electrochemistry, in the generation of the electric double layer, ...
Understanding the wettability of graphene is the crucial step toward the design and control of graph...