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Open AccessJournal ArticleDOI

Theoretical stability and materials synthesis of a chemically ordered MAX phase, Mo2ScAlC2, and its two-dimensional derivate Mo2ScC2 MXene

TLDR
In this paper, a MAX phase alloy with out-of-plane chemical order, Mo2ScAlC2, was presented, with a formation enthalpy of −−24meV/atom.
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This article is published in Acta Materialia.The article was published on 2017-02-15 and is currently open access. It has received 155 citations till now. The article focuses on the topics: Phase (matter) & High-resolution transmission electron microscopy.

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Citations
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Prediction and synthesis of a family of atomic laminate phases with Kagomé-like and in-plane chemical ordering.

TL;DR: Predictive theory and verifying materials synthesis indicate a potentially large family of thermodynamically stable phases, with Kagomé-like and in-plane chemical ordering, and with incorporation of elements previously not known for MAX phases, including the common Y.
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Recent advances in ternary two-dimensional materials: synthesis, properties and applications

TL;DR: In this paper, the authors reviewed the recent progress in various ternary 2D materials on the basis of their classification (MPTs, TMDs, MXenes, transition metal carbides and nitrides) and their applications.
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Recent advances in MXenes: From fundamentals to applications

TL;DR: The family of MAX phases and their derivative MXenes are continuously growing in terms of both crystalline and composition varieties, and several breakthroughs have been achieved that boosted the synthesis of novel MAX phases with ordered double transition metals as mentioned in this paper.
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Two-dimensional MXenes for energy storage and conversion applications

TL;DR: In this paper, a review of recent advances on early transition metal carbides and their composites with either polymers or small molecules is presented, with a perspective for their possible future directions.
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MXenes—A new class of 2D layered materials: Synthesis, properties, applications as supercapacitor electrode and beyond

TL;DR: A review on the synthesis, properties and applications of MXenes outlining the current challenges and scope for future research is presented in this article, where the authors focus on the current challenge and scope of future research.
References
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Journal ArticleDOI

Generalized Gradient Approximation Made Simple

TL;DR: A simple derivation of a simple GGA is presented, in which all parameters (other than those in LSD) are fundamental constants, and only general features of the detailed construction underlying the Perdew-Wang 1991 (PW91) GGA are invoked.
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Efficient iterative schemes for ab initio total-energy calculations using a plane-wave basis set.

TL;DR: An efficient scheme for calculating the Kohn-Sham ground state of metallic systems using pseudopotentials and a plane-wave basis set is presented and the application of Pulay's DIIS method to the iterative diagonalization of large matrices will be discussed.
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Projector augmented-wave method

TL;DR: An approach for electronic structure calculations is described that generalizes both the pseudopotential method and the linear augmented-plane-wave (LAPW) method in a natural way and can be used to treat first-row and transition-metal elements with affordable effort and provides access to the full wave function.
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From ultrasoft pseudopotentials to the projector augmented-wave method

TL;DR: In this paper, the formal relationship between US Vanderbilt-type pseudopotentials and Blochl's projector augmented wave (PAW) method is derived and the Hamilton operator, the forces, and the stress tensor are derived for this modified PAW functional.
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Special points for brillouin-zone integrations

TL;DR: In this article, a method for generating sets of special points in the Brillouin zone which provides an efficient means of integrating periodic functions of the wave vector is given, where the integration can be over the entire zone or over specified portions thereof.
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Frequently Asked Questions (2)
Q1. What are the future works in "Theoretical stability and materials synthesis of a chemically ordered max phase, mo2scalc2, and its two-dimensional derivate mo2scc2 mxene" ?

The authors have theoretically predicted the existence of a new quaternary MAX phase alloy with out-of-plane chemical order, Mo2ScAlC2, with a Sc atomic layer sandwiched between two Mo-C layers. 

The authors present theoretical prediction and experimental evidence of a new MAX phase alloy, Mo2ScAlC2, with out-of-plane chemical order. Evaluation of phase stability was performed by ab initio calculations based on Density Functional Theory, suggesting that chemical order in the alloy promotes a stable phase, with a formation enthalpy of -24 meV/atom, as opposed to the predicted unstable Mo3AlC2 and Sc3AlC2.