A plethora of magnetic ground states along with intriguing magnetic properties have been reported in thin films of Mn-containing MAX phases. However, fewer results and therefore less knowledge in the area of bulk magnetic MAX phases exist resulting in many open research questions that still remain unanswered. Synthesis of high quality materials is key and is here achieved for bulk V2AlC and its Mn-doped analogs by means of microwave heating and spark plasma sintering. The obtained materials are carefully characterized by structural and microstructural investigations resulting in an average Mn-content of 2% corresponding to the mean chemical composition of (V0.96±0.02Mn0.04±0.02)2AlC in the Mn-doped V2AlC samples. While the parent MAX phase ...
In 2013, a new class of inherently nanolaminated magnetic materials, the so called magnetic MAX phas...
How to generate and use electricity in a more efficient way is a major challenge for humankind. In t...
Mn+1AXn (MAX) phases are inherently nanolaminated compounds based on transition metals (M), A group ...
A plethora of magnetic ground states along with intriguing magnetic properties have been reported in...
A few years after the theoretical prediction of magnetic MAX phases, a number of such materials have...
Mn doped (Cr1-xMnx)2AlC compounds constitute a family of MAX-phases of great interest due to the pos...
This Thesis explores synthesis and characterization of new MAX phase alloys (M = early transition me...
Introducing magnetic elements into the structure of layered ternary transition metal-based carbides ...
MAX phases that exhibit long-range magnetic order in the bulk are still very hard to synthesize. Chr...
The objective of this Thesis is synthesis and characterization of new MAX phase alloys (M = early tr...
This review presents MAX phases (M is a transition metal, A an A-group element, X is C or N), known ...
The study of magnetic Mn+1AXn (MAX) phases (n = 1 − 3, M – a transition metal, A – an A group elemen...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)3GaC2, which is the...
This thesis presents theoretical research on MAX phases (M=transition metal, A=A-group element, X=ca...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)(3)GaC2, which is t...
In 2013, a new class of inherently nanolaminated magnetic materials, the so called magnetic MAX phas...
How to generate and use electricity in a more efficient way is a major challenge for humankind. In t...
Mn+1AXn (MAX) phases are inherently nanolaminated compounds based on transition metals (M), A group ...
A plethora of magnetic ground states along with intriguing magnetic properties have been reported in...
A few years after the theoretical prediction of magnetic MAX phases, a number of such materials have...
Mn doped (Cr1-xMnx)2AlC compounds constitute a family of MAX-phases of great interest due to the pos...
This Thesis explores synthesis and characterization of new MAX phase alloys (M = early transition me...
Introducing magnetic elements into the structure of layered ternary transition metal-based carbides ...
MAX phases that exhibit long-range magnetic order in the bulk are still very hard to synthesize. Chr...
The objective of this Thesis is synthesis and characterization of new MAX phase alloys (M = early tr...
This review presents MAX phases (M is a transition metal, A an A-group element, X is C or N), known ...
The study of magnetic Mn+1AXn (MAX) phases (n = 1 − 3, M – a transition metal, A – an A group elemen...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)3GaC2, which is the...
This thesis presents theoretical research on MAX phases (M=transition metal, A=A-group element, X=ca...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)(3)GaC2, which is t...
In 2013, a new class of inherently nanolaminated magnetic materials, the so called magnetic MAX phas...
How to generate and use electricity in a more efficient way is a major challenge for humankind. In t...
Mn+1AXn (MAX) phases are inherently nanolaminated compounds based on transition metals (M), A group ...