MXenes family has aroused marvelous consideration as a frontier photoactive candidate for solar energy transformation and environmental remediation. 2D Ti3C2 exhibit a unique layered microstructure, large surface functional groups (-F, -OH, -O), substantial sorption selectivity, superior reduction efficiency, and electrical conductivity. Electronically conductive Ti3C2Tx with tunable energy band gap (0.92-1.75eV) makes it one of the most potential photoactive materials for photodegradation. The present review paper aims to design cost-effective heterojunctions and Schottky junctions of Ti3C2 with transition metal oxides, sulfides, g-C3N4, and other organic frameworks. The discussion mainly involves different aspects related to its tunable e...
Titanium dioxide is a mainstream photocatalyst, but it still confronts great obstacles of poor visib...
Nowadays, two-dimensional materials have many applications in materials science. As a novel two-dime...
Extensive research is being done to develop multifunctional advanced new materials for high performa...
MXenes family has aroused marvelous consideration as a frontier photoactive candidate for solar ener...
Photocatalytic hydrogen generation through the utilization of the Ti3C2 MXene photocatalyst offers t...
Photocatalytic CO2 reduction to produce valuable chemicals and fuels using solar energy provides an ...
MXenes, a family of two-dimensional (2D) transition metal carbides, nitrides and carbonitrides based...
Fabricating two-dimensional (2D) titanium carbide (Ti3C2) MXene nanosheets with unique morphology co...
An ultrathin 2D Ti3C2/g-C3N4 MXene (2D-TC/CN) heterojunction was synthesized, using a facile self-as...
Transition metal carbides and nitrides, generally known as MXenes have emerged as an alternative to ...
ontrolled fabrication of Ti3C2 MXene with unique topology and layered bentonite (Bt) nanoclay to con...
Recently a large family of two-dimensional (2D) layered early transition metal carbides and carbonit...
Recently a large family of two-dimensional (2D) layered early transition metal carbides and carbonit...
MXenes, an emerging family of 2D transition metal carbides and nitrides, have shown promise in vario...
Ti3C2Tx is a 2-dimensional titanium carbide material featuring outstanding electrochemical propertie...
Titanium dioxide is a mainstream photocatalyst, but it still confronts great obstacles of poor visib...
Nowadays, two-dimensional materials have many applications in materials science. As a novel two-dime...
Extensive research is being done to develop multifunctional advanced new materials for high performa...
MXenes family has aroused marvelous consideration as a frontier photoactive candidate for solar ener...
Photocatalytic hydrogen generation through the utilization of the Ti3C2 MXene photocatalyst offers t...
Photocatalytic CO2 reduction to produce valuable chemicals and fuels using solar energy provides an ...
MXenes, a family of two-dimensional (2D) transition metal carbides, nitrides and carbonitrides based...
Fabricating two-dimensional (2D) titanium carbide (Ti3C2) MXene nanosheets with unique morphology co...
An ultrathin 2D Ti3C2/g-C3N4 MXene (2D-TC/CN) heterojunction was synthesized, using a facile self-as...
Transition metal carbides and nitrides, generally known as MXenes have emerged as an alternative to ...
ontrolled fabrication of Ti3C2 MXene with unique topology and layered bentonite (Bt) nanoclay to con...
Recently a large family of two-dimensional (2D) layered early transition metal carbides and carbonit...
Recently a large family of two-dimensional (2D) layered early transition metal carbides and carbonit...
MXenes, an emerging family of 2D transition metal carbides and nitrides, have shown promise in vario...
Ti3C2Tx is a 2-dimensional titanium carbide material featuring outstanding electrochemical propertie...
Titanium dioxide is a mainstream photocatalyst, but it still confronts great obstacles of poor visib...
Nowadays, two-dimensional materials have many applications in materials science. As a novel two-dime...
Extensive research is being done to develop multifunctional advanced new materials for high performa...