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dc.contributor.authorSi, Jingjing
dc.contributor.authorZeng, Mengqi
dc.contributor.authorTa, Huy Quang
dc.contributor.authorZheng, Shuting
dc.contributor.authorLiao, Jihai
dc.contributor.authorYang, Xiaobao
dc.contributor.authorRümmeli, Mark Hermann
dc.contributor.authorFu, Lei
dc.date.accessioned2020-06-24T12:23:04Z
dc.date.available2020-06-24T12:23:04Z
dc.date.issued2020
dc.identifier.citationSmall. 2020, art. no. 2001325.cs
dc.identifier.issn1613-6810
dc.identifier.issn1613-6829
dc.identifier.urihttp://hdl.handle.net/10084/139576
dc.description.abstractAlthough low-symmetry lattice structure of 2D transition metals is highly anticipated for both fundamental research and potentially distinctive application, it still has not been experimentally realized, which greatly hinders the exploration of the unique properties. Here, ultra-thin body-centered-cubic (bcc) phase molybdenum (Mo) membranes are successfully synthesized with a low-symmetry rectangular (110) crystal face via an adsorption-free reaction. Through experimental and density functional theory studies, no foreign atoms being adsorbed is shown to be a key factor for the successful preparation of the bcc phase 2D transition metal with (110) faces. The realization of 2D Mo(110) with a low-symmetric rectangular lattice structure extends the scope of 2D structures and is also beneficial for the exploration and development of low-symmetry rectangular lattice-structured materials with unique properties.cs
dc.language.isoencs
dc.publisherWileycs
dc.relation.ispartofseriesSmallcs
dc.relation.urihttp://doi.org/10.1002/smll.202001325cs
dc.rights© 2020 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheimcs
dc.subject2D materialscs
dc.subjectheterogenous adsorptioncs
dc.subjectlow symmetrycs
dc.subjectmolybdenumcs
dc.subjectrectangular lattice structurecs
dc.titleAdsorption-free growth of ultra-thin molybdenum membranes with a low-symmetry rectangular lattice structurecs
dc.typearticlecs
dc.identifier.doi10.1002/smll.202001325
dc.type.statusPeer-reviewedcs
dc.description.sourceWeb of Sciencecs
dc.description.firstpageart. no. 2001325cs
dc.identifier.wos000536876700001


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