Articolo in rivista, 2020, ENG, 10.1038/s41563-020-0682-z

Synthesis of mesoscale ordered two-dimensional ?-conjugated polymers with semiconducting properties

Galeotti, G.; De Marchi, F.; Hamzehpoor, E.; MacLean, O.; Rajeswara Rao, M.; Chen, Y.; Besteiro, L. V.; Dettmann, D.; Ferrari, L.; Frezza, F.; Sheverdyaeva, P. M.; Liu, R.; Kundu, A. K.; Moras, P.; Ebrahimi, M.; Gallagher, M. C.; Rosei, F.; Perepichka, D. F.; Contini, G.

Deutsches Museum; Institut National de la Recherche Scientifique; Università degli Studi di Roma Tor Vergata; Lakehead University; Consiglio Nazionale delle Ricerche; Istituto Di Struttura Della Materia, Montellibreti; University of Electronic Science and Technology of China; McGill University

Two-dimensional materials with high charge carrier mobility and tunable band gaps have attracted intense research effort for their potential use in nanoelectronics. Two-dimensional ?-conjugated polymers constitute a promising subclass because the band structure can be manipulated by varying the molecular building blocks while preserving key features such as Dirac cones and high charge mobility. The major barriers to the application of two-dimensional ?-conjugated polymers have been the small domain size and high defect density attained in the syntheses explored so far. Here, we demonstrate the fabrication of mesoscale ordered two-dimensional ?-conjugated polymer kagome lattices with semiconducting properties, Dirac cone structures and flat bands on Au(111). This material has been obtained by combining a rigid azatriangulene precursor and a hot dosing approach, which favours molecular diffusion and eliminates voids in the network. These results open opportunities for the synthesis of two-dimensional ?-conjugated polymer Dirac cone materials and their integration into devices.

Nature materials (Print)

Keywords

Two-dimensional materials, high charge carrier mobility, tunable band gaps, conjugated polymers, Dirac cones, mesoscale ordered, flat bands, Au(111)

CNR authors

Ferrari Luisa, Moras Paolo, Sheverdyaeva Polina, Contini Giorgio

CNR institutes

ISM – Istituto di struttura della materia

ID: 424789

Year: 2020

Type: Articolo in rivista

Creation: 2020-07-01 16:58:20.000

Last update: 2021-03-18 12:34:40.000

External IDs

CNR OAI-PMH: oai:it.cnr:prodotti:424789

DOI: 10.1038/s41563-020-0682-z

Scopus: 2-s2.0-85085170399