Abstract MAX phases (Ti3SiC2, Ti3AlC2, V2AlC, Ti4AlN3, etc.) are layered ternary carbides/nitrides, which are generally processed and researched as structure ceramics. Selectively removing A layer from MAX phases, MXenes (Ti3C2, V2C, Mo2C, etc.) with two-dimensional (2D) structure can be prepared. The MXenes are electrically conductive and hydrophilic, which are promising as functional materials in many areas. This article reviews the milestones and the latest progress in the research of MAX phases and MXenes, from the perspective of ceramic science. Especially, this article focuses on the conversion from MAX phases to MXenes. First, we summarize the microstructure, preparation, properties, and applications of MAX phases. Among the various ...
MXenes have emerged as one of the most interesting material classes, owing to their outstanding phys...
Two-dimensional (2D) transition metal carbides, carbonitrides, and nitrides (MXenes) were discovered...
Since the isolation and characterization of graphene, there has been a growing interest in 2D materi...
In recent years, ternary layered carbide/nitride MAX phases and their derived two-dimensional nanola...
During recent years, new types of materials have been discovered with unique properties. One family ...
Recently a new, large family of two-dimensional (2D) early transition metal carbides and carbonitrid...
The MAX phases are nanolayered transition metal carbides and nitrides characterized by a unique comb...
The synthesis of MXenes is a lively area of research in today’s materials sciencecommunity. Pure car...
Recently,two-dimensional (2D) transition metal carbon/nitride (MXene) material attracts much attenti...
Since the discovery of Ti3C2 in 2011, a class of 2D transition metal carbides and nitrides, called M...
Nowadays, two-dimensional materials have many applications in materials science. As a novel two-dime...
Since the discovery of Ti3C2 in 2011, a class of 2D transition metal carbides and nitrides, called M...
MAX phases are a family of ternary carbide or nitride ceramics possessing a layered crystal structur...
Ti3C2Tx MXene is an attractive two-dimensional (2D) material for a wide variety of applications; how...
International audienceLayered ternary carbides and nitrides, also known as MAX phases, have attracte...
MXenes have emerged as one of the most interesting material classes, owing to their outstanding phys...
Two-dimensional (2D) transition metal carbides, carbonitrides, and nitrides (MXenes) were discovered...
Since the isolation and characterization of graphene, there has been a growing interest in 2D materi...
In recent years, ternary layered carbide/nitride MAX phases and their derived two-dimensional nanola...
During recent years, new types of materials have been discovered with unique properties. One family ...
Recently a new, large family of two-dimensional (2D) early transition metal carbides and carbonitrid...
The MAX phases are nanolayered transition metal carbides and nitrides characterized by a unique comb...
The synthesis of MXenes is a lively area of research in today’s materials sciencecommunity. Pure car...
Recently,two-dimensional (2D) transition metal carbon/nitride (MXene) material attracts much attenti...
Since the discovery of Ti3C2 in 2011, a class of 2D transition metal carbides and nitrides, called M...
Nowadays, two-dimensional materials have many applications in materials science. As a novel two-dime...
Since the discovery of Ti3C2 in 2011, a class of 2D transition metal carbides and nitrides, called M...
MAX phases are a family of ternary carbide or nitride ceramics possessing a layered crystal structur...
Ti3C2Tx MXene is an attractive two-dimensional (2D) material for a wide variety of applications; how...
International audienceLayered ternary carbides and nitrides, also known as MAX phases, have attracte...
MXenes have emerged as one of the most interesting material classes, owing to their outstanding phys...
Two-dimensional (2D) transition metal carbides, carbonitrides, and nitrides (MXenes) were discovered...
Since the isolation and characterization of graphene, there has been a growing interest in 2D materi...