Structure and synthesis of MAX phase materials: a brief review

X Lei, N Lin - Critical Reviews in Solid State and Materials …, 2022 - Taylor & Francis
MAX phase materials a new family of ternary layered carbide and nitride compounds are
represented by the general formula of Mn+ 1AXn, where n= 1∼ 3, M stands for early …

Sintering of MAX-phase materials by spark plasma and other methods

J Lyu, EB Kashkarov, N Travitzky, MS Syrtanov… - Journal of Materials …, 2021 - Springer
This review focuses on the comparison of the spark plasma sintering (SPS) with other
fabrication methods of MAX-phase materials. In the view of optimizing properties for …

Pulsed laser deposition of epitaxial Cr2AlC MAX phase thin films on MgO(111) and Al2O3(0001)

M Stevens, H Pazniak, A Jemiola, M Felek… - Materials Research …, 2021 - Taylor & Francis
Epitaxial Cr2AlC MAX phase thin films were grown on MgO (111) and Al2O3 (0001) by
pulsed laser deposition (PLD) at 600° C. X-ray diffraction and morphology studies of Cr2AlC …

Complex optimization of arc melting synthesis for bulk Cr2AlC MAX-phase

K Sobolev, A Pazniak, O Shylenko, V Komanicky… - Ceramics …, 2021 - Elsevier
A complex optimization of the arc melting synthetic approach was performed to enhance the
phase purity of Cr 2 AlC MAX-phase in the bulk form. Optimization steps included the initial …

Synthesis of phase-pure highly-doped MAX-phase (Cr1-xMnx) 2AlC

K Sobolev, M Gorshenkov, P Manfrinetti, D Peddis… - Ceramics …, 2021 - Elsevier
Abstract Mn doped (Cr 1-x Mn x) 2 AlC compounds constitute a family of MAX-phases of
great interest due to the possibility of tuning the magnetic properties they possess. Their …

Synthesis, phase purification and magnetic characterization of the (Cr 1− x, Mn x) 2 AlC MAX-phase

K Sobolev, H Pazniak, M Farle, V Rodionova… - Journal of Materials …, 2021 - pubs.rsc.org
The Cr2AlC MAX phase is a promising parent compound to introduce magnetism to nano-
laminated ternary carbides by doping with Mn. Here, we demonstrate that Mn doping of bulk …

Structure, Morphology, Heat Capacity, and Electrical Transport Properties of Ti3(Al,Si)C2 Materials

K Goc, J Przewoźnik, K Witulska, L Chlubny, W Tokarz… - Materials, 2021 - mdpi.com
A study of Ti3Al1− x Si x C2 (x= 0 to x= 1) MAX-phase alloys is reported. The materials were
obtained from mixtures of Ti3AlC2 and Ti3SiC2 powders with hot pressing sintering …

M-site Bimetallic Approach to Improve Electromagnetic Wave Absorption in MAX Phase

F Fang, M Chen, Z Zhu, Y Zhang, Y Li - Ceramics International, 2025 - Elsevier
ABSTRACT MAX phases are considered promising materials for absorbing electromagnetic
(EM) waves due to their unique combination of metal and ceramic properties, which make …

Magnetic Properties and Microstructures of Fe-Doped (Ti1-xFex)3AlC2 MAX Phase and Their MXene Derivatives

S Sun, Y Yu, S Sun, Q Wang, T Chen, J Chen… - … of Superconductivity and …, 2021 - Springer
The effects of Fe substitution for Ti on the structural and magnetic properties of the (Ti 1-x Fe
x) 3 AlC 2 (x= 0, 0.025, 0.05, 0.075) MAX phases have been studied. The Fe substitution …

粉末冶金法制备Ti4AlN3及其性能研究

郭辉, 李喜坤, 宋园园, 孙骞, 黄轶文 - 钢铁钒钛, 2021 - gtft.cn
采用粉末冶金法制备Ti 4 AlN 3 三元层状金属陶瓷, 研究不同的原料粉末, 烧结温度和保温时间对
其纯度的影响. 利用X 射线衍射仪(XRD) 对烧结试样进行定性分析, 并基于Rietveld …