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RESEARCH PRODUCT

Continuous‐Flow Synthesis of High‐Quality Few‐Layer Antimonene Hexagons

Elena SalagreGonzalo AbellánGonzalo AbellánMaria VarelaIñigo TorresCristina Gómez-navarroRoger Sanchis-gualFélix ZamoraMarta AlcarazEnrique G. MichelChristian DolleCarlos GibajaMichael FickertDiego A. AldaveMhamed AssebbanJulio Gómez-herreroJose A. Carrasco

subject

Materials sciencebusiness.industryContinuous flow02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical sciencesElectronic Optical and Magnetic MaterialsBiomaterialsQuality (physics)ElectrochemistryOptoelectronics0210 nano-technologybusinessLayer (electronics)Colloidal synthesis

description

2D materials show outstanding properties that can bring many applications in different technological fields. However, their uses are still limited by production methods. In this context, antimonene is recently suggested as a new 2D material to fabricate different (opto)electronic devices, among other potential applications. This work focuses on optimizing the synthetic parameters to produce high-quality antimonene hexagons and their implementation in a large-scale manufacturing procedure. By means of a continuous-flow synthesis, few-layer antimonene hexagons with ultra-large lateral dimensions (up to several microns) and a few nanometers thick are isolated. The suitable chemical post-treatment of these nanolayers with chloroform gives rise to antimonene surfaces showing low oxidation that can be easily contacted with microelectrodes. Therefore, the reported procedure offers a way to solve two critical problems for using antimonene in many applications: large-scale preparation of high-quality antimonene and the ability to set electrical contacts useful for device fabrication. PNICTOCHEM 804110 (G.A.) PID2019-111742-GA-I00 CIDEGENT/2018/001

https://doi.org/10.1002/adfm.202101616