Nanolaminated materials are important because of their exceptional properties and wide range of applications. Here, we demonstrate a general approach to synthesizing a series of Zn-based MAX phases and Cl-terminated MXenes originating from the replacement reaction between the MAX phase and the late transition-metal halides. The approach is a top-down route that enables the late transitional element atom (Zn in the present case) to occupy the A site in the pre-existing MAX phase structure. Using this replacement reaction between the Zn element from molten ZnCl2 and the Al element in MAX phase precursors (Ti3AlC2, Ti2AlC, Ti2AlN, and V2AlC), novel MAX phases Ti3ZnC2, Ti2ZnC, Ti2ZnN, and V2ZnC were synthesized. When employing excess ZnCl2, Cl-...
With increased chemical diversity and structural complexity comes the opportunities for innovative m...
The use of inorganic molten salts and liquid metals as solvents opens up the possibility to synthesi...
International audienceStructural bidimensional transition-metal carbides and/or nitrides (MXenes) ha...
Nanolaminated materials are important because of their exceptional properties and wide range of appl...
Galvanic replacement in molten salts has recently been uncovered as a pathway to design new composit...
Two-dimensional carbides and nitrides of transition metals, known as MXenes, are a fast-growing fami...
MXenes, a rapidly growing family of 2D transition metal carbides, carbonitrides, and nitrides, are o...
International audienceMXenes, a rapidly growing family of 2D transition metal carbides, carbonitride...
New MAX phases Ti2(AlxCu1−x)N and Nb2CuC were synthesized by A-site replacement by reacting Ti2AlN a...
International audienceThe unique properties of 2D MXenes, such as metal-like electrical conductivity...
The enigma of MAX phases and their hybrids prevails. We probe transition metal (M) alloying in MAX p...
International audienceLayered ternary carbides and nitrides, also known as MAX phases, have attracte...
The molten salt method was used to synthesise the MAX phase compounds Ti2AlC and Ti3AlC2from element...
o-MXenes are a family of layered double-transition-metal carbides and nitrides with a unique out-of-...
MXenes are a rapidly growing family of 2D materials that exhibit a highly versatile structure and co...
With increased chemical diversity and structural complexity comes the opportunities for innovative m...
The use of inorganic molten salts and liquid metals as solvents opens up the possibility to synthesi...
International audienceStructural bidimensional transition-metal carbides and/or nitrides (MXenes) ha...
Nanolaminated materials are important because of their exceptional properties and wide range of appl...
Galvanic replacement in molten salts has recently been uncovered as a pathway to design new composit...
Two-dimensional carbides and nitrides of transition metals, known as MXenes, are a fast-growing fami...
MXenes, a rapidly growing family of 2D transition metal carbides, carbonitrides, and nitrides, are o...
International audienceMXenes, a rapidly growing family of 2D transition metal carbides, carbonitride...
New MAX phases Ti2(AlxCu1−x)N and Nb2CuC were synthesized by A-site replacement by reacting Ti2AlN a...
International audienceThe unique properties of 2D MXenes, such as metal-like electrical conductivity...
The enigma of MAX phases and their hybrids prevails. We probe transition metal (M) alloying in MAX p...
International audienceLayered ternary carbides and nitrides, also known as MAX phases, have attracte...
The molten salt method was used to synthesise the MAX phase compounds Ti2AlC and Ti3AlC2from element...
o-MXenes are a family of layered double-transition-metal carbides and nitrides with a unique out-of-...
MXenes are a rapidly growing family of 2D materials that exhibit a highly versatile structure and co...
With increased chemical diversity and structural complexity comes the opportunities for innovative m...
The use of inorganic molten salts and liquid metals as solvents opens up the possibility to synthesi...
International audienceStructural bidimensional transition-metal carbides and/or nitrides (MXenes) ha...