Modern design of superior multi functional alloys composed of several principal components requires in depth studies of their local structure for developing desired macroscopic properties. Herein, peculiarities of atomic arrangements on the local scale and electronic states of constituent elements in the single phase face centered cubic fcc and body centered cubic bcc structured high entropy Alx CrFeCoNi alloys x 0.3 and 3, respectively are explored by element specific X ray absorption spectroscopy in hard and soft X ray energy ranges. Simulations based on the reverse Monte Carlo approach allow to perform a simultaneous fit of extended X ray absorption fine structure spectra recorded at K absorption edges of each 3d constituent a...
This work presents an X ray absorption spectroscopy study on a single phase state of the Al8Cr17Co1...
This work presents an X ray absorption spectroscopy study on a single phase state of the Al8Cr17Co1...
To investigate lattice distortion evolutions of CrCoNi medium-entropy alloy (MEA), CrFeCoNi, and CrM...
Modern design of superior multi functional alloys composed of several principal components requires ...
Modern design of superior multi functional alloys composed of several principal components requires ...
The huge atomic heterogeneity of high entropy materials along with a possibility to unravel the beha...
The huge atomic heterogeneity of high entropy materials along with a possibility to unravel the beha...
The superior properties of high entropy multi functional materials are strongly connected with their...
The superior properties of high entropy multi functional materials are strongly connected with their...
The superior properties of high entropy multi functional materials are strongly connected with their...
The effect of Al on the crystal structures of the high-entropy alloy AlxCrFeCoNi is discussed using ...
A distinguish feature of high-entropy alloys (HEAs) is well-defined crystalline structure with chemi...
A distinguish feature of high-entropy alloys (HEAs) is well-defined crystalline structure with chemi...
Nowadays, the development of new advanced technologies in the field of information storage and elect...
This work presents an X ray absorption spectroscopy study on a single phase state of the Al8Cr17Co1...
This work presents an X ray absorption spectroscopy study on a single phase state of the Al8Cr17Co1...
This work presents an X ray absorption spectroscopy study on a single phase state of the Al8Cr17Co1...
To investigate lattice distortion evolutions of CrCoNi medium-entropy alloy (MEA), CrFeCoNi, and CrM...
Modern design of superior multi functional alloys composed of several principal components requires ...
Modern design of superior multi functional alloys composed of several principal components requires ...
The huge atomic heterogeneity of high entropy materials along with a possibility to unravel the beha...
The huge atomic heterogeneity of high entropy materials along with a possibility to unravel the beha...
The superior properties of high entropy multi functional materials are strongly connected with their...
The superior properties of high entropy multi functional materials are strongly connected with their...
The superior properties of high entropy multi functional materials are strongly connected with their...
The effect of Al on the crystal structures of the high-entropy alloy AlxCrFeCoNi is discussed using ...
A distinguish feature of high-entropy alloys (HEAs) is well-defined crystalline structure with chemi...
A distinguish feature of high-entropy alloys (HEAs) is well-defined crystalline structure with chemi...
Nowadays, the development of new advanced technologies in the field of information storage and elect...
This work presents an X ray absorption spectroscopy study on a single phase state of the Al8Cr17Co1...
This work presents an X ray absorption spectroscopy study on a single phase state of the Al8Cr17Co1...
This work presents an X ray absorption spectroscopy study on a single phase state of the Al8Cr17Co1...
To investigate lattice distortion evolutions of CrCoNi medium-entropy alloy (MEA), CrFeCoNi, and CrM...