Deterministic Covalent Organic Functionalization of Monolayer Graphene with 1,3-Dipolar Cycloaddition Via High Resolution Surface Engineering

22 Pages Posted: 22 Feb 2022

See all articles by Luca Basta

Luca Basta

Scuola Normale Superiore

Federica Bianco

affiliation not provided to SSRN

Aldo Moscardini

Scuola Normale Superiore

Filippo Fabbri

affiliation not provided to SSRN

Luca Bellucci

Consiglio Nazionale delle Ricerche

Valentina Tozzini

affiliation not provided to SSRN

Stefan Heun

affiliation not provided to SSRN

Stefano Veronesi

affiliation not provided to SSRN

Abstract

Spatially-resolved organic functionalization of monolayer graphene is successfully achieved by combining low-energy electron beam irradiation with 1,3-dipolar cycloaddition of azomethine ylide. Indeed, the modification of the graphene honeycomb lattice obtained via electron beam irradiation yields to a local increase of the graphene chemical reactivity. As a consequence, thanks to the high-spatially resolved generation of structural defects (∼ 100 nm), chemical reactivity patterning has been designed over the graphene surface in a well-controlled way. Atomic force microscopy and Raman spectroscopy allow to investigate the two-dimensional spatial distribution of the structural defects and the new features that arise from the 1,3-dipolar cycloaddition, confirming the spatial selectivity of the graphene functionalization achieved via defect engineering. The Raman signature of the functionalized graphene is investigated both experimentally and via ab initio molecular dynamics simulations, computing the power spectrum. Furthermore, the organic functionalization is shown to be reversible thanks to the desorption of the azomethine ylide induced by focused laser irradiation. The selective and reversible functionalization of high quality graphene using 1,3-dipolar cycloaddition is a significant step towards the controlled synthesis of graphene-based complex structures and devices at the nanoscale.

Keywords: spatially-resolved organic functionalization, monolayer graphene, electron irradiation, cycloaddition, RAMAN SPECTROSCOPY, DFT

Suggested Citation

Basta, Luca and Bianco, Federica and Moscardini, Aldo and Fabbri, Filippo and Bellucci, Luca and Tozzini, Valentina and Heun, Stefan and Veronesi, Stefano, Deterministic Covalent Organic Functionalization of Monolayer Graphene with 1,3-Dipolar Cycloaddition Via High Resolution Surface Engineering. Available at SSRN: https://ssrn.com/abstract=4039980 or http://dx.doi.org/10.2139/ssrn.4039980

Luca Basta (Contact Author)

Scuola Normale Superiore ( email )

Piazza dei Cavalieri, 7
Pisa, 56126
Italy

Federica Bianco

affiliation not provided to SSRN ( email )

No Address Available

Aldo Moscardini

Scuola Normale Superiore ( email )

Piazza dei Cavalieri, 7
Pisa, 56126
Italy

Filippo Fabbri

affiliation not provided to SSRN ( email )

No Address Available

Luca Bellucci

Consiglio Nazionale delle Ricerche ( email )

Valentina Tozzini

affiliation not provided to SSRN ( email )

No Address Available

Stefan Heun

affiliation not provided to SSRN ( email )

No Address Available

Stefano Veronesi

affiliation not provided to SSRN ( email )

No Address Available

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