Exfoliation of Two-Dimensional Nanosheets of Metal Diborides
Ahmed Yousaf, Matthew S. Gilliam, Shery L. Y. Chang, Mathias Augustin,, Yuqi Guo, Fraaz Tahir, Meng Wang, Alexandra Schwindt, Ximo S. Chu, Duo O. Li,, Suneet Kale, Abhishek Debnath, Yongming Liu, Matthew D. Green, Elton J. G., Santos, Alexander A. Green, and Qing Hua Wang

TL;DR
This paper demonstrates a scalable method to produce stable dispersions of 2D nanosheets from diverse metal diborides, enabling new applications in composites and expanding the family of exfoliable non-van der Waals materials.
Contribution
It introduces ultrasonication-assisted exfoliation to produce 2D nanosheets of various metal diborides, a previously unexplored class of non-van der Waals materials.
Findings
Exfoliated nanosheets retain hexagonal structure and composition.
CrB₂ nanosheets enhance polymer composite mechanical properties.
Method enables scalable production of 2D metal diborides.
Abstract
The metal diborides are a class of ceramic materials with crystal structures consisting of hexagonal sheets of boron atoms alternating with planes of metal atoms held together with mixed character ionic/covalent bonds. Many of the metal diborides are ultrahigh temperature ceramics like HfB, TaB, and ZrB, which have melting points above 3000C, high mechanical hardness and strength at high temperatures, and high chemical resistance, while MgB is a superconductor with a transition temperature of 39 K. Here we demonstrate that this diverse family of non-van der Waals materials can be processed into stable dispersions of two-dimensional (2D) nanosheets using ultrasonication-assisted exfoliation. We generate 2D nanosheets of the metal diborides AlB, CrB, HfB, MgB, NbB, TaB, TiB, and ZrB, and use electron and scanning probe microscopies…
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Taxonomy
TopicsMXene and MAX Phase Materials · Boron and Carbon Nanomaterials Research · Graphene research and applications
