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From structural ceramics to 2D materials with multi-applications: A review on the development from MAX phases to MXenes
Abstract MAX phases (Ti 3 SiC 2, Ti 3 AlC 2, V 2 AlC, Ti 4 AlN 3, etc.) are layered ternary
carbides/nitrides, which are generally processed and researched as structure ceramics …
carbides/nitrides, which are generally processed and researched as structure ceramics …
MXenes for rechargeable batteries beyond the lithium‐ion
Research on next‐generation battery technologies (beyond Li‐ion batteries, or LIBs) has
been accelerating over the past few years. A key challenge for these emerging batteries has …
been accelerating over the past few years. A key challenge for these emerging batteries has …
[HTML][HTML] MAX phases–Past, present, and future
The MAX phases are a class of nanolaminated materials composed of an early transition-
metal (M), an A-group element (A) and C, N, B and/or P (X). Progress in MAX phase …
metal (M), an A-group element (A) and C, N, B and/or P (X). Progress in MAX phase …
On the formation mechanisms and properties of MAX phases: A review
MAX phases are a family of ternary carbide or nitride ceramics possessing a layered crystal
structure and, due to their chemical bonds having a mixed covalent-ionic-metallic nature …
structure and, due to their chemical bonds having a mixed covalent-ionic-metallic nature …
MAX phases as nanolaminate materials: chemical composition, microstructure, synthesis, properties, and applications
In recent years, MAX phases, a family of nanolaminate materials, have garnered
tremendous research interest worldwide, due to the fact that they possess an excellent …
tremendous research interest worldwide, due to the fact that they possess an excellent …
Advancements in MAX phase materials: structure, properties, and novel applications
The MAX phase represents a diverse class of nanolaminate materials with intriguing
properties that have received incredible global research attention because they bridge the …
properties that have received incredible global research attention because they bridge the …
Mechanical and oxidation behavior of textured Ti2AlC and Ti3AlC2 MAX phase materials
Abstract Highly textured Ti 2 AlC and Ti 3 AlC 2 ceramics were successfully fabricated by a
two-step fabrication process, and the Lotgering orientation factors for {00l} planes of textured …
two-step fabrication process, and the Lotgering orientation factors for {00l} planes of textured …
Recently synthesized (Ti 1− x Mo x) 2 AlC (0≤ x≤ 0.20) solid solutions: deciphering the structural, electronic, mechanical and thermodynamic properties via ab initio …
The structural, electronic, mechanical and thermodynamic properties of (Ti1− xMox) 2AlC
(0≤ x≤ 0.20) were explored using density functional theory. The obtained lattice constants …
(0≤ x≤ 0.20) were explored using density functional theory. The obtained lattice constants …
New Solid Solution MAX Phases: (Ti0.5, V0.5)3AlC2, (Nb0.5, V0.5)2AlC, (Nb0.5, V0.5)4AlC3 and (Nb0.8, Zr0.2)2AlC
We synthesized the following previously unreported aluminum-containing solid solution M
n+ 1AX n phases:(Ti0. 5, V0. 5) 3AlC2,(Nb0. 5, V0. 5) 2AlC,(Nb0. 5, V0. 5) 4AlC3 and (Nb0 …
n+ 1AX n phases:(Ti0. 5, V0. 5) 3AlC2,(Nb0. 5, V0. 5) 2AlC,(Nb0. 5, V0. 5) 4AlC3 and (Nb0 …
Synthesis and Characterization of Double Solid Solution (Zr,Ti)2(Al,Sn)C MAX Phase Ceramics
Quasi phase-pure (> 98 wt%) MAX phase solid solution ceramics with the (Zr, Ti) 2 (Al0. 5,
Sn0. 5) C stoichiometry and variable Zr/Ti ratios were synthesized by both reactive hot …
Sn0. 5) C stoichiometry and variable Zr/Ti ratios were synthesized by both reactive hot …