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THD-C Sheet: A Novel Nonbenzenoid Carbon Allotrope with Tetra-, Hexa-, and Dodeca-Membered Rings

Trevor Jenkins, Alexander Silva, Marcos G. Menezes, Timo Thonhauser, Saif Ullah

2024The Journal of Physical Chemistry C13 citationsDOIOpen Access PDF

Abstract

We propose a novel two-dimensional carbon-based structure with tetra-, hexa-, and dodeca-membered rings, which we refer to by the abbreviated name, THD-C. The structure presents a mixture of sp–sp 2 hybridization and can potentially be synthesized by the topological assembly of 4-ethynyldiphenylacetylene molecules. By employing first-principles calculations, the stability and ease of synthesis of the sheet are investigated and compared with various C-allotropes. We predict its metallic behavior and excellent kinetic and dynamic stability. Due to the crystal structure of the sheet, a strong mechanical anisotropy is observed. The effects of functionalization on the electronic properties of the material are also studied, and different semiconducting systems are obtained. The potential of THD-C for energy storage in metal-based batteries, hydrogen storage, and catalysis is also investigated, and we find a superior performance in comparison to graphite and other allotropes. The quantum confinement effect is investigated by constructing nanoribbons and nanotubes of various sizes. For ribbons, we find that tailor-made electronic and magnetic properties can be obtained and explored in potential spintronic devices. Additionally, we observe that nanotubes are conducting irrespective of their chirality and can potentially be used for capture, storage, and separation of industrially relevant small gas molecules.

Topics & Concepts

Materials scienceSpintronicsNanotechnologyHEXAGraphiteCarbon nanotubeHydrogen storageMoleculeChemical physicsCrystallographyChemistryOrganic chemistryComposite materialPhysicsCondensed matter physicsFerromagnetismAlloyGraphene research and applicationsBoron and Carbon Nanomaterials ResearchSurface Chemistry and Catalysis
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