Frontiers in Chemistry · 2021 · 44 citations · 23 references
Group III layered monochalcogenide gallium sulfide, GaS, is one of the latest additions to the two-dimensional (2D) materials family, and of particular interest for visible-UV optoelectronic applications due to its wide bandgap energy in the range 2.35-3.05 eV going from bulk to monolayer. Interestingly, when going to the few-layer regime, changes in the electronic structure occur, resulting in a change in the properties of the material. Therefore, a systematic study on the thickness dependence of the different properties of GaS is needed. Here, we analyze mechanically exfoliated GaS layers transferred to glass substrates. Specifically, we report the dependence of the Raman spectra, photoluminescence, optical transmittance, resistivity, and work function on the thickness of GaS. Those findings can be used as guidance in designing devices based on GaS.
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Correspondence: Reply to ‘The experimental requirements for a photon thermal diode’
Zhen Chen, Carlaton Wong, Sean Lubner et al. · Nature Communications · 2017 · 465 citations · Full text
Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals
Benjamin J. Carey, Jian Zhen Ou, Rhiannon M. Clark et al. · Nature Communications · 2017 · 281 citations · Full text
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