MAX phases that exhibit long-range magnetic order in the bulk are still very hard to synthesize. Chromium and manganese are the cutoff elements when transitioning through the 3dmetals that still form stable full and doped MAX phases, respectively. An iron-based (on the M-site) bulk MAX phase does not exist. Therefore, other strategies to induce long-range magnetic ordering in bulk MAX phases are necessary to open the path to new functional materials. Here, we demonstrate the nonconventional synthesis of a hitherto unknown MAX phase solid-solution (V1–xCrx)2GaC by microwave heating. The full series with 0 < x < 1 (x = 0.20, 0.40, 0.50, 0.60, 0.80) forms almost single phase with minimal differences in their morphology. Their magnetic properti...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)(3)GaC2, which is t...
Magnetic ordering in the MAX phase (Cr0.96Mn0.04)2GeC is investigated by means of neutron powder dif...
In 2013, a new class of inherently nanolaminated magnetic materials, the so called magnetic MAX phas...
A plethora of magnetic ground states along with intriguing magnetic properties have been reported in...
Introducing magnetic elements into the structure of layered ternary transition metal-based carbides ...
A few years after the theoretical prediction of magnetic MAX phases, a number of such materials have...
We combine predictive ab initio calculations with experimental verification of bulk materials synthe...
This review presents MAX phases (M is a transition metal, A an A-group element, X is C or N), known ...
abstract: MAX phases are ternary carbides or nitrides that possess unique material characteristics, ...
This Thesis explores synthesis and characterization of new MAX phase alloys (M = early transition me...
The study of magnetic Mn+1AXn (MAX) phases (n = 1 − 3, M – a transition metal, A – an A group elemen...
The magnetic properties of the new phase (Cr0.5Mn0.5)2AuC are compared to the known MAX-phase (Cr0.5...
The magnetic properties of the new phase (Cr0.5Mn0.5)(2)AuC are compared to the known MAX-phase (Cr0...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)3GaC2, which is the...
Magnetic ordering in the MAX phase (Cr0.96Mn0.04)(2)GeC is investigated by means of neutron powder d...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)(3)GaC2, which is t...
Magnetic ordering in the MAX phase (Cr0.96Mn0.04)2GeC is investigated by means of neutron powder dif...
In 2013, a new class of inherently nanolaminated magnetic materials, the so called magnetic MAX phas...
A plethora of magnetic ground states along with intriguing magnetic properties have been reported in...
Introducing magnetic elements into the structure of layered ternary transition metal-based carbides ...
A few years after the theoretical prediction of magnetic MAX phases, a number of such materials have...
We combine predictive ab initio calculations with experimental verification of bulk materials synthe...
This review presents MAX phases (M is a transition metal, A an A-group element, X is C or N), known ...
abstract: MAX phases are ternary carbides or nitrides that possess unique material characteristics, ...
This Thesis explores synthesis and characterization of new MAX phase alloys (M = early transition me...
The study of magnetic Mn+1AXn (MAX) phases (n = 1 − 3, M – a transition metal, A – an A group elemen...
The magnetic properties of the new phase (Cr0.5Mn0.5)2AuC are compared to the known MAX-phase (Cr0.5...
The magnetic properties of the new phase (Cr0.5Mn0.5)(2)AuC are compared to the known MAX-phase (Cr0...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)3GaC2, which is the...
Magnetic ordering in the MAX phase (Cr0.96Mn0.04)(2)GeC is investigated by means of neutron powder d...
We report on synthesis and characterization of a new magnetic nanolaminate (V,Mn)(3)GaC2, which is t...
Magnetic ordering in the MAX phase (Cr0.96Mn0.04)2GeC is investigated by means of neutron powder dif...
In 2013, a new class of inherently nanolaminated magnetic materials, the so called magnetic MAX phas...