The high intercalation capacitance of MXenes is attractive, but their performance as electrodes in supercapacitors is limited by mass transport when increasing the thickness and mass loading of the electrodes. Here, we report a combined experimental and computational study, through which we reveal the diffusion of hydrated ionic species at the interlayer spaces. We find that the cyclic voltammetry (CV) curves for the delaminated Ti3C2Tx exhibit distinct features in acid (H2SO4) and alkaline (KOH) electrolytes. The calculated migration profiles of K+ and H+ using density functional theory, in the presence and absence of water, suggest that the intercalated water molecules stabilize the charged ions, facilitating their diffusion from two dime...
Ti3C2 and other two-dimensional transition metal carbides known as MXenes are currently being explor...
International audienceWe demonstrated that the chemical intercalation of Zn$^{2+}$ ions within the i...
A continuum of water populations can exist in nanoscale layered materials, which impacts transport p...
The dream device for electrochemical energy storage (EES) should have both high energy density (as i...
International audienceTwo-dimensional Ti3C2Tx MXenes have been extensively studied as pseudocapaciti...
The fast progress in renewable energy sources, emerging electronics, and electrical automobiles stim...
Identifying and understanding charge storage mechanisms is important for advancing energy storage. W...
The high propensity of protons to stay at interfaces has attracted much attention over the decades. ...
International audienceThe intercalation of ions into layered compounds has long been exploited in en...
The ionic charge and lattice diffusion of carbon in titanium carbide have been investigated through ...
Electric double-layer capacitors using nanoporous carbons store electricity efficiently, with high p...
Here, we report on a novel study for battery application regarding the impact of interactions in cha...
The ion intercalation behavior in 2D materials is widely applied in energy storage, electrocatalysis...
ABSTRACT: Supercapacitors are electrochemical devices which store energy by ion adsorption on the su...
Ti3C2 and other two-dimensional transition metal carbides known as MXenes are currently being explor...
International audienceWe demonstrated that the chemical intercalation of Zn$^{2+}$ ions within the i...
A continuum of water populations can exist in nanoscale layered materials, which impacts transport p...
The dream device for electrochemical energy storage (EES) should have both high energy density (as i...
International audienceTwo-dimensional Ti3C2Tx MXenes have been extensively studied as pseudocapaciti...
The fast progress in renewable energy sources, emerging electronics, and electrical automobiles stim...
Identifying and understanding charge storage mechanisms is important for advancing energy storage. W...
The high propensity of protons to stay at interfaces has attracted much attention over the decades. ...
International audienceThe intercalation of ions into layered compounds has long been exploited in en...
The ionic charge and lattice diffusion of carbon in titanium carbide have been investigated through ...
Electric double-layer capacitors using nanoporous carbons store electricity efficiently, with high p...
Here, we report on a novel study for battery application regarding the impact of interactions in cha...
The ion intercalation behavior in 2D materials is widely applied in energy storage, electrocatalysis...
ABSTRACT: Supercapacitors are electrochemical devices which store energy by ion adsorption on the su...
Ti3C2 and other two-dimensional transition metal carbides known as MXenes are currently being explor...
International audienceWe demonstrated that the chemical intercalation of Zn$^{2+}$ ions within the i...
A continuum of water populations can exist in nanoscale layered materials, which impacts transport p...