Diboron trioxide (b2O3) represents an unusual case among polymorphic oxides, because its vitrified state features superstructural units—planar boroxol groups—that are never observed in its three-dimensional crystalline polymorphs. crystalline polymorphs that incorporate boroxol groups have only been predicted theoretically, although their formation is crucial to rationalize the ability of b2O3 to vitrify. Here we present the synthesis of a two-dimensional crystalline b2O3 polymorph constituted by boroxol groups arranged in an atomically thin honeycomb lattice. by combining surface science experimental techniques with ab initio calculations, we characterize the structural and electronic properties of this b2O3 polymorph down to the atomic level. this discovery enlarges the family of two-dimensional materials and enables the atomic tracking of individual structural units in trioxides.

Two-dimensional diboron trioxide crystal composed by boroxol groups

Teresa Zio
Primo
;
Cinzia Di Giorgio;Cinzia Cepek;Matteo Jugovac;Andrea Locatelli;Laerte L. Patera;Alessandro Sala
;
Giovanni Comelli;Maria Peressi
;
Cristina Africh
Ultimo
2025

Abstract

Diboron trioxide (b2O3) represents an unusual case among polymorphic oxides, because its vitrified state features superstructural units—planar boroxol groups—that are never observed in its three-dimensional crystalline polymorphs. crystalline polymorphs that incorporate boroxol groups have only been predicted theoretically, although their formation is crucial to rationalize the ability of b2O3 to vitrify. Here we present the synthesis of a two-dimensional crystalline b2O3 polymorph constituted by boroxol groups arranged in an atomically thin honeycomb lattice. by combining surface science experimental techniques with ab initio calculations, we characterize the structural and electronic properties of this b2O3 polymorph down to the atomic level. this discovery enlarges the family of two-dimensional materials and enables the atomic tracking of individual structural units in trioxides.
2025
Istituto Officina dei Materiali - IOM -
Istituto di Struttura della Materia - ISM - Sede Secondaria Trieste
Istituto Nazionale di Ottica - INO - Sede Secondaria di Brescia
boron oxide, boroxol, boria, diboron trioxide
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/578781
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