International audiencePseudocapacitive materials that store charges by fast redox reactions are promising candidates for designing high energy density electrochemical capacitors. MXenes e recently discovered twodimensional carbides, have shown excellent capacitance in aqueous electrolytes, but in a narrow potential window, which limits both the energy and power density. Here, we investigated the electrochemical behavior of Ti3C2 MXene in 1M solution of 1-ethly-3-methylimidazolium bis- (trifluoromethylsulfonyl) -imide (EMITFSI) in acetonitrile and two other common organic electrolytes. This paper describes the use of clay, delaminated and composite Ti3C2 electrodes with carbon nanotubes in order to understand the effect of the electrode arch...
International audienceThe electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
International audienceThe electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
Pseudocapacitive materials that store charges by fast redox reactions are promising candidates for d...
The electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from the MXene family, in ...
International audienceTwo-dimensional metal carbide and nitride materials (MXenes) with controlled C...
International audienceTwo-dimensional metal carbide and nitride materials (MXenes) with controlled C...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
International audienceThe electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from...
International audienceThe electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
International audienceThe electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
International audiencePseudocapacitive materials that store charges by fast redox reactions are prom...
Pseudocapacitive materials that store charges by fast redox reactions are promising candidates for d...
The electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from the MXene family, in ...
International audienceTwo-dimensional metal carbide and nitride materials (MXenes) with controlled C...
International audienceTwo-dimensional metal carbide and nitride materials (MXenes) with controlled C...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
International audienceThe electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from...
International audienceThe electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from...
Novel electrode materials are always explored to achieve better performance of supercapacitors. Tita...
International audienceThe electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from...