Ten Years of Progress in the Synthesis and Development of MXenes
Десять лет прогресса в синтезе и разработке MXenes
2021-08-16
SCID: 54.1/ary2zaw5
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2D transition metal carbides and nitridesMAX phasesMXenesSelective etchingSurface chemistry
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Abstract (AI)
Abstract Since their discovery in 2011, the number of 2D transition metal carbides and nitrides (MXenes) has steadily increased. Currently more than 40 MXene compositions exist. The ultimate number is far greater and in time they may develop into the largest family of 2D materials known. MXenes’ unique properties, such as their metal‐like electrical conductivity reaching ≈20 000 S cm −1 , render them quite useful in a large number of applications, including energy storage, optoelectronic, biomedical, communications, and environmental. The number of MXene papers and patents published has been growing quickly. The first MXene generation is synthesized using selective etching of metal layers from the MAX phases, layered transition metal carbides and carbonitrides using hydrofluoric acid. Since then, multiple synthesis approaches have been developed, including selective etching in a mixture of fluoride salts and various acids, non‐aqueous etchants, halogens, and molten salts, allowing for the synthesis of new MXenes with better control over their surface chemistries. Herein, a brief historical overview of the first 10 years of MXene research and a perspective on their synthesis and future development are provided. The fact that their production is readily scalable in aqueous environments, with high yields bodes well for their commercialization.
Key Findings
1
MXene production is scalable in aqueous environments and can achieve high yields, supporting prospects for commercialization.
2
MXene synthesis has expanded beyond hydrofluoric-acid etching of MAX phases to fluoride-salt/acid mixtures, non-aqueous etchants, halogens, and molten salts.
3
MXenes exhibit metal-like electrical conductivity reaching approximately 20,000 S cm−1, supporting applications in energy storage, optoelectronics, biomedicine, communications, and environmental technologies.
4
More than 40 MXene compositions have been reported since their discovery in 2011, with substantially more compositions potentially achievable.
5
New synthesis approaches enable production of MXenes with improved control over their surface chemistries.
Research Object
MXenes (two-dimensional transition metal carbides and nitrides)
Research Subject
the synthesis, surface-chemistry control, properties, applications, and future development of MXenes
Publication Details
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2021-08-16
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