Toward the Synthesis of Tetrahex-Carbon: A Rational Precursor Design Theory for On-Surface Synthesis of a 4-6 Carbon Allotrope
Description
This paper presents a theoretical framework for the synthesis of tetrahex-carbon, a predicted two-dimensional carbon allotrope made up of alternating four-membered and six-membered rings. It argues that current biphenylene-based approaches run into a topological limitation and proposes a more rational precursor-design strategy for guiding on-surface synthesis toward the tetrahex lattice.
The proposed route uses functionalized benzocyclobutadiene-derived precursors that can couple through four-membered-ring reactive sites on metal surfaces under ultra-high-vacuum conditions. The framework also gives testable predictions for lattice structure, electronic behavior, and STM/STS signatures that could be checked experimentally.
the goal of this work is to provide a starting point for future computational and experimental studies on tetrahex-carbon and related non-graphene carbon allotropes.
Files
Files
(23.4 kB)
| Name | Size | Download all |
|---|---|---|
|
md5:517f357d19cf798585732d3c2365d459
|
23.4 kB | Download |