The ion intercalation behavior in 2D materials is widely applied in energy storage, electrocatalysis, and desalination. However, the detailed effect of ions on the performance, combining the influence of interlayer force and the change of solvent shell, is far less well understood. Here the solvated alkali metal ions with different sizes are intercalated into the lattice of 2D materials with different spacings (Ti3C2Tx, δ-MnO2, and reduced graphene oxide) to construct the intercalation model related with sub-nanometer confined ions and solvent molecules to further understand the intercalation capacitance. Based on electrochemical methods and density functional theory calculation, the ions lose the electrostatic shielding solvent shell or sh...
A new electrolyte gating technique probes the dynamics of the electrical double layer at the electro...
Whether or not specific ion effects determine the charge storage properties of aqueous graphene and ...
In this dissertation, nanostructured materials are examined for electrochemical energy storage devic...
The ion intercalation behavior in 2D materials is widely applied in energy storage, electrocatalysis...
Understanding the effects of double layer formation on charged interfaces is integral in many discip...
Intercalation of alkali metals has proved to be an effective approach for the enhancement of the ene...
International audienceThe intercalation of ions into layered compounds has long been exploited in en...
In this work we study mechanisms of solvent-mediated ion interactions with charged surfaces in ionic...
Nanopores made with low dimensional semiconducting materials, such as carbon nanotubes and graphene ...
Electrical double layers, comprising of a surface charge and excess ions in solution, are of critica...
International audienceThe capacitance of the electrochemical interface has traditionally been separa...
MXene, a new family of materials comprised of ternary carbonitrides of the early transition metals, ...
Molecular dynamics simulations are carried out to investigate the structure and capacitance of the e...
2D materials have attracted tremendous attention due to their unique physical and chemical properti...
Intercalation of alkali metals has proved to be an effective approach for the enhancement of the ene...
A new electrolyte gating technique probes the dynamics of the electrical double layer at the electro...
Whether or not specific ion effects determine the charge storage properties of aqueous graphene and ...
In this dissertation, nanostructured materials are examined for electrochemical energy storage devic...
The ion intercalation behavior in 2D materials is widely applied in energy storage, electrocatalysis...
Understanding the effects of double layer formation on charged interfaces is integral in many discip...
Intercalation of alkali metals has proved to be an effective approach for the enhancement of the ene...
International audienceThe intercalation of ions into layered compounds has long been exploited in en...
In this work we study mechanisms of solvent-mediated ion interactions with charged surfaces in ionic...
Nanopores made with low dimensional semiconducting materials, such as carbon nanotubes and graphene ...
Electrical double layers, comprising of a surface charge and excess ions in solution, are of critica...
International audienceThe capacitance of the electrochemical interface has traditionally been separa...
MXene, a new family of materials comprised of ternary carbonitrides of the early transition metals, ...
Molecular dynamics simulations are carried out to investigate the structure and capacitance of the e...
2D materials have attracted tremendous attention due to their unique physical and chemical properti...
Intercalation of alkali metals has proved to be an effective approach for the enhancement of the ene...
A new electrolyte gating technique probes the dynamics of the electrical double layer at the electro...
Whether or not specific ion effects determine the charge storage properties of aqueous graphene and ...
In this dissertation, nanostructured materials are examined for electrochemical energy storage devic...