Despite having never been synthesized, the MAX phase Zr2AlC attracts a lot of interest owing to its foreseen properties. A possible way to circumvent this obstacle is to stabilize Zr2AlC by partially substituting one of its constituting elements. Here we report on attempts to synthesise quaternary MAX phases (Zr,M)2AlC and Zr2(Al,A)C where M = Cr, Ti or Mo and A = S, As, Sn, Sb and Pb. We were notably able to produce Zr2(Al0.2Sn0.8)C, Zr2(Al0.35Pb0.65)C, and Zr2(Al0.3Sb0.7)C, with the latter representing the first antimony-based MAX phase ever reported
The enigma of MAX phases and their hybrids prevails. We probe transition metal (M) alloying in MAX p...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
Soft chemistry methods offer the possibility of synthesizing metastable and kinetic products that ca...
The addition of Nb and Sn to Zr2AlC is investigated, targeting the synthesis of a Zr-rich bulk MAX p...
MAX phases have garnered considerable research attention due to their unusual combination of metalli...
Herein we report, for the first time, on the synthesis and structural characterization of the Zr-bas...
This study reports on the first experimental evidence of the existence of the Zr2AlC MAX phase, synt...
This study reports on the synthesis and characterization of MAX phases in the (Zr,Ti)n+1AlCn system....
<p>XRD raw data for the synthesis of (Zr<sub>1-x</sub>,Ti<sub>x</sub>)<sub>3</sub>AlC<sub>2</sub> MA...
In this work we systematically explore a class of atomically laminated materials, M(n+1)AX(n) (MAX) ...
Guided by predictive theory, a new compound with chemical composition (Cr₂⁄₃Zr₁⁄₃)₂AlC was synthesiz...
Nanolaminated materials are important because of their exceptional properties and wide range of appl...
MAX phases (M = metal, A = A-group element, X = C and/or N) are layered materials, combining metalli...
Synthesis, characterisation and density functional theory calculations have been combined to examine...
The molten salt method was used to synthesise the MAX phase compounds Ti2AlC and Ti3AlC2from element...
The enigma of MAX phases and their hybrids prevails. We probe transition metal (M) alloying in MAX p...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
Soft chemistry methods offer the possibility of synthesizing metastable and kinetic products that ca...
The addition of Nb and Sn to Zr2AlC is investigated, targeting the synthesis of a Zr-rich bulk MAX p...
MAX phases have garnered considerable research attention due to their unusual combination of metalli...
Herein we report, for the first time, on the synthesis and structural characterization of the Zr-bas...
This study reports on the first experimental evidence of the existence of the Zr2AlC MAX phase, synt...
This study reports on the synthesis and characterization of MAX phases in the (Zr,Ti)n+1AlCn system....
<p>XRD raw data for the synthesis of (Zr<sub>1-x</sub>,Ti<sub>x</sub>)<sub>3</sub>AlC<sub>2</sub> MA...
In this work we systematically explore a class of atomically laminated materials, M(n+1)AX(n) (MAX) ...
Guided by predictive theory, a new compound with chemical composition (Cr₂⁄₃Zr₁⁄₃)₂AlC was synthesiz...
Nanolaminated materials are important because of their exceptional properties and wide range of appl...
MAX phases (M = metal, A = A-group element, X = C and/or N) are layered materials, combining metalli...
Synthesis, characterisation and density functional theory calculations have been combined to examine...
The molten salt method was used to synthesise the MAX phase compounds Ti2AlC and Ti3AlC2from element...
The enigma of MAX phases and their hybrids prevails. We probe transition metal (M) alloying in MAX p...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
Soft chemistry methods offer the possibility of synthesizing metastable and kinetic products that ca...