This thesis presents theoretical research on MAX phases (M=transition metal, A=A-group element, X=carbon and/or nitrogen), with focus on predictions of phase stability as well as of physical properties. The first part is an investigation of the phase stability of the MAX phases Ti2AlC, Ti3AlC2, and Ti4AlC3 at elevated temperatures, where the former two phases have been obtained experimentally. Phase stability calculations of MAX phases usually do not take temperature dependent effects such as electronic excitations and lattice vibrations into consideration due to significantly increased computational cost. The results have nevertheless so far been quite accurate, with good agreement between theory and experiments. Still, the question whethe...
Based on high throughput density functional theory calculations, we evaluated systematically the st...
In this study, the structural, electronic, mechanical, lattice dynamical and thermodynamic character...
This review presents MAX phases (M is a transition metal, A an A-group element, X is C or N), known ...
This thesis presents theoretical research on MAX phases (M=transition metal, A=A-group element, X=ca...
The MAX phase family is a set of nanolaminated, hexagonal materials typically comprised of three ele...
In this thesis, first-principles calculations within density functional theory are presented, with a...
We systematically perform density-functional theory (DFT) calculations for all possible Mn+1AXn (MAX...
This Thesis explores synthesis and characterization of new MAX phase alloys (M = early transition me...
This article is a Critical review of the M(n + 1)AX(n) phases ("MAX phases", where n = 1, 2, or 3) f...
The objective of this Thesis is synthesis and characterization of new MAX phase alloys (M = early tr...
In this study, we report a comprehensive assessment on the elastic and electronic properties of 792 ...
Atomic vibrations weave into the fabric of the materials properties landscape in a diverse multitude...
The MAX phases are nanolayered transition metal carbides and nitrides characterized by a unique comb...
We have developed a systematic method to investigate the phase stability of M(n+1)AX(n) phases, here...
The Mn+1AXn phases (n=1,2, or 3) or MAX phases , where M is a transition metal, A is an A- group ...
Based on high throughput density functional theory calculations, we evaluated systematically the st...
In this study, the structural, electronic, mechanical, lattice dynamical and thermodynamic character...
This review presents MAX phases (M is a transition metal, A an A-group element, X is C or N), known ...
This thesis presents theoretical research on MAX phases (M=transition metal, A=A-group element, X=ca...
The MAX phase family is a set of nanolaminated, hexagonal materials typically comprised of three ele...
In this thesis, first-principles calculations within density functional theory are presented, with a...
We systematically perform density-functional theory (DFT) calculations for all possible Mn+1AXn (MAX...
This Thesis explores synthesis and characterization of new MAX phase alloys (M = early transition me...
This article is a Critical review of the M(n + 1)AX(n) phases ("MAX phases", where n = 1, 2, or 3) f...
The objective of this Thesis is synthesis and characterization of new MAX phase alloys (M = early tr...
In this study, we report a comprehensive assessment on the elastic and electronic properties of 792 ...
Atomic vibrations weave into the fabric of the materials properties landscape in a diverse multitude...
The MAX phases are nanolayered transition metal carbides and nitrides characterized by a unique comb...
We have developed a systematic method to investigate the phase stability of M(n+1)AX(n) phases, here...
The Mn+1AXn phases (n=1,2, or 3) or MAX phases , where M is a transition metal, A is an A- group ...
Based on high throughput density functional theory calculations, we evaluated systematically the st...
In this study, the structural, electronic, mechanical, lattice dynamical and thermodynamic character...
This review presents MAX phases (M is a transition metal, A an A-group element, X is C or N), known ...