Kubitza Niels, Büchner Carina, Sinclair Jordan, Snyder Rose M, Birkel Christina S
Department of Chemistry and Biochemistry, Technische Universitaet Darmstadt, 64287, Darmstadt, Germany.
School of Molecular Sciences, Arizona State University, Tempe, AZ 85281, USA.
Chempluschem. 2023 Aug;88(8):e202300214. doi: 10.1002/cplu.202300214.
MAX phases are layered solids with unique properties combining characteristics of ceramics and metals. MXenes are their two-dimensional siblings that can be synthesized as van der Waals-stacked and multi-/single-layer nanosheets, which possess chemical and physical properties that make them interesting for a plethora of applications. Both families of materials are highly versatile in terms of their chemical composition and theoretical studies suggest that many more members are stable and can be synthesized. This is very intriguing because new combinations of elements, and potentially new structures, can lead to further (tunable) properties. In this review, we focus on the synthesis science (including non-conventional approaches) and structure of members less investigated, namely compounds with more exotic M-, A-, and X-elements, for example nitrides and (carbo)nitrides, and the related family of MAB phases.
MAX相是具有独特性能的层状固体,兼具陶瓷和金属的特性。MXenes是它们的二维同类物,可以合成范德华堆叠的多层/单层纳米片,这些纳米片具有化学和物理性质,使其在众多应用中具有吸引力。这两类材料在化学成分方面都具有高度的通用性,理论研究表明还有更多成员是稳定的并且可以合成。这非常有趣,因为元素的新组合以及潜在的新结构可能会导致进一步的(可调节)性能。在这篇综述中,我们关注较少研究的成员的合成科学(包括非常规方法)和结构,即含有更奇特的M、A和X元素的化合物,例如氮化物和(碳)氮化物,以及相关的MAB相家族。