MXenes are a rapidly-expanding family of 2D transition metal carbides and nitrides that have attracted attention due to their excellent performance in applications ranging from energy storage to electromagnetic interference shielding. Numerous other electronic and magnetic properties have been computationally predicted, but not yet realized due to the experimental difficulty in obtaining uniform surface terminations (Tx), necessitating new design approaches for MXenes that are independent of surface terminations. In this study, we distinguished the contributions of surface and sub-surface Ti atoms to the electronic structure of four Ti-containing MXenes (Ti2CTx, Ti3C2Tx, Cr2TiC2Tx, and Mo2TiC2Tx) using soft x-ray absorption spectroscopy. Fo...
The properties of two-dimensional (2D) materials depend strongly on the chemical and electrochemical...
The properties of two-dimensional (2D) materials depend strongly on the chemical and electrochemical...
Abstract Using a multiscale computational scheme, we study the trends in distribution and compositi...
International audienceTwo-dimensional (2D) carbides and/or nitrides (so-called MXenes) are among the...
MXenes, an emerging family of 2D transition metal carbides and nitrides, have shown promise in vario...
The chemical bonding within the transition-metal carbide materials MAX phase Ti3AlC2 and MXene Ti3C2...
The chemical bonding within the transition-metal carbide materials MAX phase Ti3AlC2 and MXene Ti3C2...
Recently, a new family of two-dimensional (2D) early transition metal carbides and carbonitrides, la...
Abstract MXenes are a family two-dimensional transition-metal carbide and nitride materials, which ...
MXenes are a recently discovered family of two-dimensional (2D) early transition metal carbides and ...
Research on two-dimensional (2D) materials is a rapidly growing field owing to the wide range of new...
tThe chemical bonding in the carbide core and the surface chemistry in a new group of transition-met...
Since the discovery of two-dimensional transition metal carbides, referred to as MXenes, research ef...
Two dimensional (2D) materials have received growing interest because of their unique properties com...
In this work, a detailed high resolution X-ray photoelectron spectroscopy (XPS) analysis is presente...
The properties of two-dimensional (2D) materials depend strongly on the chemical and electrochemical...
The properties of two-dimensional (2D) materials depend strongly on the chemical and electrochemical...
Abstract Using a multiscale computational scheme, we study the trends in distribution and compositi...
International audienceTwo-dimensional (2D) carbides and/or nitrides (so-called MXenes) are among the...
MXenes, an emerging family of 2D transition metal carbides and nitrides, have shown promise in vario...
The chemical bonding within the transition-metal carbide materials MAX phase Ti3AlC2 and MXene Ti3C2...
The chemical bonding within the transition-metal carbide materials MAX phase Ti3AlC2 and MXene Ti3C2...
Recently, a new family of two-dimensional (2D) early transition metal carbides and carbonitrides, la...
Abstract MXenes are a family two-dimensional transition-metal carbide and nitride materials, which ...
MXenes are a recently discovered family of two-dimensional (2D) early transition metal carbides and ...
Research on two-dimensional (2D) materials is a rapidly growing field owing to the wide range of new...
tThe chemical bonding in the carbide core and the surface chemistry in a new group of transition-met...
Since the discovery of two-dimensional transition metal carbides, referred to as MXenes, research ef...
Two dimensional (2D) materials have received growing interest because of their unique properties com...
In this work, a detailed high resolution X-ray photoelectron spectroscopy (XPS) analysis is presente...
The properties of two-dimensional (2D) materials depend strongly on the chemical and electrochemical...
The properties of two-dimensional (2D) materials depend strongly on the chemical and electrochemical...
Abstract Using a multiscale computational scheme, we study the trends in distribution and compositi...