Electronic and structural properties of atomically thin metallenes
arXiv:2502.17131 · doi:10.1088/2516-1075/adb4b5
Abstract
Although metallic elements favor three-dimensional (3D) geometries due to their isotropic, metallic bonding, experiments have reported metals also with two-dimensional (2D) allotropes, the so-called metallenes. And while bulk metals' electronic and structural properties are well known, the corresponding knowledge for atomically thin metallenes remains scattered. Therefore, in this work, we use density-functional theory to investigate the electronic and structural properties of 45 elemental metals with honeycomb, square, and hexagonal lattices, along with their buckled counterparts, resulting in a comprehensive catalog of 270 metallenes with their properties. We systematically present their structural, energetic, and electronic structure properties and discuss similarities and differences compared to their 3D counterparts. As a result, simple and noble metals exhibit similar characteristics and lack buckled hexagonal lattice. Apart from scattered exceptions, the trends in several properties, such as bond lengths, cohesion energies, and projected densities of states, are governed by coordination numbers and exhibit systematic patterns. This systematic reporting provides a necessary reference for the selection and categorization of metallenes for further experimental efforts to develop them for catalytic, sensing, plasmonic, and nanoelectronics applications.
15 pages, 10 figures
References in corpus (11)
- The PseudoDojo: Training and grading a 85 element optimized norm-conserving pseudopotential table
- QuantumATK: An integrated platform of electronic and atomic-scale modelling tools
- Atlas for the properties of elemental 2D metals
- Dynamical stability of two-dimensional metals in the periodic table
- Plenty of motion at the bottom: Atomically thin liquid gold membrane
- Stability limits of elemental 2D metals in graphene pores
- Free-standing 2D metals from binary metal alloys
- Beyond ideal two-dimensional metals: Edges, vacancies, and polarizabilities
- Electronic properties of bismuth nanostructures
- Gentle tension stabilizes atomically thin metallenes
- Optimizing density-functional simulations for two-dimensional metals