Modelling Strategies for the Covalent Functionalization of 2D Phosphorene
Andrea Ienco, Gabriele Manca, Maurizio Peruzzini, Carlo Mealli

TL;DR
This study uses DFT calculations to explore covalent functionalization strategies for phosphorene, analyzing various acceptor reactants and metal fragments to predict stable, electronically modified 2D materials.
Contribution
It provides a comprehensive theoretical analysis of covalent functionalization pathways for phosphorene, including new potential adducts not yet experimentally characterized.
Findings
BH3 and I2 are effective acceptors for covalent attachment.
Metal fragments can form stable covalent bonds with phosphorene.
Electronic properties of functionalized phosphorene can be tuned via different adducts.
Abstract
The paper is an excursus on potential acid-base adducts formed by an unsaturated main group or transition metal species and P atoms of phosphorene (P n ), which derives from the black phosphorus exfoliation. Various possibilities of attaining a realistic covalent functionalization of the 2D material have been examined via DFT solid state calculations. The distribution of neighbor P atoms at one side of the sheet and the reciprocal directionalities of their lone pairs must be clearly understood to foreshadow the best possible acceptor reactants. Amongst the latter, the main group BH3 or I2 species have been examined for their intrinsic acidity, which favors the periodic mono-hapto anchoring at Pn atoms. The corresponding adducts are systematically compared with other molecular P donors from a phosphine to white phosphorus, P4. Significant variations emerge from the comparison of the band…
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