MAB phases are layered materials combining metallic and ceramic attributes. Their ternary compositions, however, have been limited to a few elemental combinations which makes controlled and tailored properties challenging. Inspired by the recent discovery of Mo4/3Y2/3AlB2 and Mo(4/3)Sc(2/3)AlB(2)i-MAB phases, i.e., quaternary layered MAB phases with in-plane chemical order, we perform an extensive first-principles study to explore formation of chemical order and solid-solutions upon metal alloying of M(2)AB(2) phases of 1092 compositions (M from group 3 to 9 and A = Al, Ga, In, Si, Ge, Sn). This large dataset provides 39 chemically ordered (i-MAB) and 52 solid solution (MAB) phases that are predicted to be thermodynamically stable at typica...
With increased chemical diversity and structural complexity comes the opportunities for innovative m...
The recent discovery of Cr4AlB4, a laminated ternary metal boride belonging to the family of layered...
MAX phases (M = metal, A = A-group element, X = C and/or N) are layered materials, combining metalli...
MAB phases are layered materials combining metallic and ceramic attributes. Their ternary compositio...
Inspired by the recent discovery of Ti4MoSiB2, a quaternary phase with out-of-plane chemical order t...
All atomically laminated MAB phases (M = transition metal, A = A-group element, and B = boron) exhib...
In the quest for finding novel thermodynamically stable, layered, MAB phases promising for synthesis...
The MAB phases are a family of layered ternary transition metal borides, with atomically laminated c...
The synthesis procedure of any materials system is often considered a challenging task if performed ...
We report the synthesis of three out-of-plane chemically ordered quaternary transition metal borides...
In this work we systematically explore a class of atomically laminated materials, M(n+1)AX(n) (MAX) ...
Exploratory theoretical predictions in uncharted structural and compositional space are integral to ...
The recent discovery of chemical ordering in quaternary borides offers new ways of exploring propert...
We have by means of first principles density functional theory calculations studied the mechanical a...
The enigma of MAX phases and their hybrids prevails. We probe transition metal (M) alloying in MAX p...
With increased chemical diversity and structural complexity comes the opportunities for innovative m...
The recent discovery of Cr4AlB4, a laminated ternary metal boride belonging to the family of layered...
MAX phases (M = metal, A = A-group element, X = C and/or N) are layered materials, combining metalli...
MAB phases are layered materials combining metallic and ceramic attributes. Their ternary compositio...
Inspired by the recent discovery of Ti4MoSiB2, a quaternary phase with out-of-plane chemical order t...
All atomically laminated MAB phases (M = transition metal, A = A-group element, and B = boron) exhib...
In the quest for finding novel thermodynamically stable, layered, MAB phases promising for synthesis...
The MAB phases are a family of layered ternary transition metal borides, with atomically laminated c...
The synthesis procedure of any materials system is often considered a challenging task if performed ...
We report the synthesis of three out-of-plane chemically ordered quaternary transition metal borides...
In this work we systematically explore a class of atomically laminated materials, M(n+1)AX(n) (MAX) ...
Exploratory theoretical predictions in uncharted structural and compositional space are integral to ...
The recent discovery of chemical ordering in quaternary borides offers new ways of exploring propert...
We have by means of first principles density functional theory calculations studied the mechanical a...
The enigma of MAX phases and their hybrids prevails. We probe transition metal (M) alloying in MAX p...
With increased chemical diversity and structural complexity comes the opportunities for innovative m...
The recent discovery of Cr4AlB4, a laminated ternary metal boride belonging to the family of layered...
MAX phases (M = metal, A = A-group element, X = C and/or N) are layered materials, combining metalli...