Herein, we demonstrate the fabrication of Ti3C2Tx electrodes using solution processing. Two-dimensional (2D) nanometer Ti3C2Tx flakes are site-aggregated on copper and nickel foam papers with a reconstituted threedimensional (3D) structure consisting of overlapping and open-pore 2D flakes. When Ti3C2Tx was used as electrochemical capacitor electrodes in 1 M Na2SO4 solution, the capacitances were comparable to literature values. There is a quantitative linear relationship between the capacitance and foam thicknesses. Given the process scalability and the morphological control that is possible, these results provide a promising road map for convenient and economical supercapacitors
Here, rational design electrodes are fabricated by mixing MXene with an aqueous solution of chloroau...
The intercalation of ions into layered compounds has long been exploited in energy storage devices s...
Due to the limited fossil fuel and the rapidly increasing demand in terms of energy, sourcing for al...
Two dimensional transition metal carbides and nitrides MXenes have demonstrated great potential as...
The electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from the MXene family, in ...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
International audienceTwo-dimensional Ti3C2Tx MXene, derived from the parent Ti3AlC2 phase, is consi...
3D printing is a manufacturing technique that can be used to produce electrochemical capacitors with...
We report the synthesized mixture of MXene and Ni–Co LDH on nickel foam by an electrodeposition tech...
MXene-based materials are promising electrode materials for supercapacitors. Herein, Ni2CO3(OH)2 nan...
The Ti3C2Tx film with metallic conductivity and high pseudo-capacitance holds profound promise in fl...
Abstract An ultrahigh capacity supercapacitor is fabricated using a nano-layered MXene as an active ...
© The Author(s) 2018. Metal-free supercapacitors were designed and fabricated using a 3D printing pr...
The structure and morphology of titanium carbide (Ti3C2Tx) MXene, a new class of two dimensional (2D...
Recently a new family of two-dimensional (2D) early transition metal carbides and carbonitrides, cal...
Here, rational design electrodes are fabricated by mixing MXene with an aqueous solution of chloroau...
The intercalation of ions into layered compounds has long been exploited in energy storage devices s...
Due to the limited fossil fuel and the rapidly increasing demand in terms of energy, sourcing for al...
Two dimensional transition metal carbides and nitrides MXenes have demonstrated great potential as...
The electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from the MXene family, in ...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
International audienceTwo-dimensional Ti3C2Tx MXene, derived from the parent Ti3AlC2 phase, is consi...
3D printing is a manufacturing technique that can be used to produce electrochemical capacitors with...
We report the synthesized mixture of MXene and Ni–Co LDH on nickel foam by an electrodeposition tech...
MXene-based materials are promising electrode materials for supercapacitors. Herein, Ni2CO3(OH)2 nan...
The Ti3C2Tx film with metallic conductivity and high pseudo-capacitance holds profound promise in fl...
Abstract An ultrahigh capacity supercapacitor is fabricated using a nano-layered MXene as an active ...
© The Author(s) 2018. Metal-free supercapacitors were designed and fabricated using a 3D printing pr...
The structure and morphology of titanium carbide (Ti3C2Tx) MXene, a new class of two dimensional (2D...
Recently a new family of two-dimensional (2D) early transition metal carbides and carbonitrides, cal...
Here, rational design electrodes are fabricated by mixing MXene with an aqueous solution of chloroau...
The intercalation of ions into layered compounds has long been exploited in energy storage devices s...
Due to the limited fossil fuel and the rapidly increasing demand in terms of energy, sourcing for al...