Ti3C2Tx MXene is a two dimensional 2D material possessing highly active hydrophilic surfaces coupled with high metallic conductivity. Cations intercalation between the Ti3C2Tx nanosheets has a significant role in many applications such as water purification, desalination, and electrochemical energy storage. The pseudocapacitive charging mechanism involving surface redox reactions at the Ti3C2Tx surface enables higher energy densities than electrical double layer capacitors, and higher power densities than batteries. In this context, the oxidation state of surface Ti atoms involved in redox reactions has a high impact on the capacitance of Ti3C2Tx MXene and this can be impacted by cation intercalation. Thus, the electronic structure of mul...
The pursuit of new and better battery materials has given rise to numerous studies of the possibilit...
Intercalation and delamination of two-dimensional solids in many cases is a requisite step for explo...
The pursuit of new and better battery materials has given rise to numerous studies of the possibilit...
Ti3C2Tx MXene is a two dimensional 2D material possessing highly active hydrophilic surfaces coupl...
Intercalation in Ti3C2Tx MXene is essential for a diverse set of applications such as water purifica...
MXenes have shown outstanding properties due to their highly active hydrophilic surfaces coupled wit...
MXenes have shown outstanding properties due to their highly active hydrophilic surfaces coupled wit...
Recently, a new family of two-dimensional (2D) early transition metal carbides and carbonitrides, la...
The intercalation of ions into layered compounds has long been exploited in energy storage devices s...
Two dimensional transition metal carbides and nitrides MXenes have demonstrated great potential as...
MXene, a new family of materials comprised of ternary carbonitrides of the early transition metals, ...
The electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from the MXene family, in ...
2D titanium carbide (Ti3C2TxMXene) showed good capacitance in both organic and neat ionic liquid ele...
MXenes, as an emerging class of 2D materials, display distinctive physical and chemical properties, ...
The pursuit of new and better battery materials has given rise to numerous studies of the possibilit...
Intercalation and delamination of two-dimensional solids in many cases is a requisite step for explo...
The pursuit of new and better battery materials has given rise to numerous studies of the possibilit...
Ti3C2Tx MXene is a two dimensional 2D material possessing highly active hydrophilic surfaces coupl...
Intercalation in Ti3C2Tx MXene is essential for a diverse set of applications such as water purifica...
MXenes have shown outstanding properties due to their highly active hydrophilic surfaces coupled wit...
MXenes have shown outstanding properties due to their highly active hydrophilic surfaces coupled wit...
Recently, a new family of two-dimensional (2D) early transition metal carbides and carbonitrides, la...
The intercalation of ions into layered compounds has long been exploited in energy storage devices s...
Two dimensional transition metal carbides and nitrides MXenes have demonstrated great potential as...
MXene, a new family of materials comprised of ternary carbonitrides of the early transition metals, ...
The electrochemical behavior of Ti3C2, a two-dimensional titanium carbide from the MXene family, in ...
2D titanium carbide (Ti3C2TxMXene) showed good capacitance in both organic and neat ionic liquid ele...
MXenes, as an emerging class of 2D materials, display distinctive physical and chemical properties, ...
The pursuit of new and better battery materials has given rise to numerous studies of the possibilit...
Intercalation and delamination of two-dimensional solids in many cases is a requisite step for explo...
The pursuit of new and better battery materials has given rise to numerous studies of the possibilit...