Spontaneous dynamical disordering of borophenes in MgB2 and related metal borides

Author:

Li SichiORCID,Gunda HariniORCID,Ray Keith G.ORCID,Wong Chun-ShangORCID,Xiao PenghaoORCID,Friddle Raymond W.ORCID,Liu Yi-ShengORCID,Kang ShinYoung,Dun ChaochaoORCID,Sugar Joshua D.,Kolasinski Robert D.,Wan Liwen F.,Baker Alexander A.,Lee Jonathan R. I.ORCID,Urban Jeffrey J.ORCID,Jasuja KabeerORCID,Allendorf Mark D.ORCID,Stavila VitalieORCID,Wood Brandon C.ORCID

Abstract

AbstractLayered boron compounds have attracted significant interest in applications from energy storage to electronic materials to device applications, owing in part to a diversity of surface properties tied to specific arrangements of boron atoms. Here we report the energy landscape for surface atomic configurations of MgB2 by combining first-principles calculations, global optimization, material synthesis and characterization. We demonstrate that contrary to previous assumptions, multiple disordered reconstructions are thermodynamically preferred and kinetically accessible within exposed B surfaces in MgB2 and other layered metal diborides at low boron chemical potentials. Such a dynamic environment and intrinsic disordering of the B surface atoms present new opportunities to realize a diverse set of 2D boron structures. We validated the predicted surface disorder by characterizing exfoliated boron-terminated MgB2 nanosheets. We further discuss application-relevant implications, with a particular view towards understanding the impact of boron surface heterogeneity on hydrogen storage performance.

Funder

U.S. Department of Energy

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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