2 citations · 4 across the 3 of their papers we have counts for
6 papers
Unexpected Near-Infrared to Visible Non-linear Optical Properties from Two-Dimensional Polar Metals
Megan A. Steves, Yuanxi Wang, Natalie Briggs +16
Near-infrared-to-visible second harmonic generation from air-stable two-dimensional polar gallium and indium metals is described. The photonic properties of 2D metals - including t…
An Air-Stable and Atomically Thin Graphene/Gallium Superconducting Heterostructure
Brian Bersch, Natalie Briggs, Yuanxi Wang +13
Two-dimensional layered and atomically thin elemental superconductors may be key ingredients in next-generation quantum technologies, if they can be stabilized and integrated into…
Confinement Heteroepitaxy: Realizing Atomically Thin, Half-van der Waals Materials
Natalie Briggs, Brian Bersch, Yuanxi Wang +16
Three-dimensional epitaxial heterostructures are based on covalently-bonded interfaces, whereas those from 2-dimensional (2D) materials exhibit van der Waals interactions. Under th…
Epitaxial Graphene Intercalation: A Route to Graphene Modulation and Unique 2D Materials
Natalie Briggs, Zewdu M. Gebeyehu, Alexander Vera +7
Intercalation of atomic species through epitaxial graphene layers began only a few years following its initial report in 2004. The impact of intercalation on the electronic propert…
High-quality, large-grain MoS2 films grown on 100 mm sapphire substrates using a novel molybdenum precursor
Paul Quayle, Bin Zhang, Jacob Leach +3
Two-dimensional MoS2 is a crystalline semiconductor with high potential for numerous technologies. Research in recent years has sought to exploit the direct band gap and high carri…
Considerations for utilizing sodium chloride in epitaxial molybdenum disulfide
Kehao Zhang, Brian M. Bersch, Fu Zhang +10
The utilization of alkali salts, such as NaCl and KI, have enabled the successful growth of large single domain and fully coalesced polycrystalline two-dimensional (2D) transition…