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Autoren:
Wu, Yecun; Zhang, Duan; Lee, Kangho; Duesberg, Georg; Syrlybekov, Askar; Liu, Xiao; Abid, Mourad; Abid, Mohamed; Liu, Yanqi; Zhang, Lisheng; Ò Coileáin, Cormac; Xu, Hongjun; Cho, Jiung; Choi, Miri; Sun Chun, Byong; Wang, Haomao; Liu, Huajun; Wu, Han-Chun 
Dokumenttyp:
Zeitschriftenartikel / Journal Article 
Titel:
Quantum confinement and gas sensing of mechanically exfoliated GaSe 
Zeitschrift:
Advanced Materials Technologies 
Jahrgang:
Heftnummer:
Jahr:
2017 
Seiten von - bis:
1600197 
Sprache:
Englisch 
Abstract:
GaSe layers with thicknesses ranging from a monolayer to 100 nm are successfully mechanically exfoliated for use in gas sensing. In combination with density functional theory calculations, general guidelines to determine the number of layers using Raman spectra are presented. With decreasing layer numbers, quantum confinement induces a red‐shift for out‐of‐plane modes and a blue‐shift for in‐plane modes. The relative Raman shifts of the out‐of‐plane vibrational modes and grow exponentially with decreasing stack thickness from 100 to 1 layers. Moreover, the change in first‐order temperature coefficient (χ) also increases exponentially as the number of layers is reduced, with the value of the first‐order temperature coefficient of the mode of monolayer GaSe (≈−1.99 × 10−2 cm−1 K−1) being almost double that of 100 layer GaSe (≈−1.22 × 10−2 cm−1 K−1). Finally, the exfoliated GaSe is used for gas … 
Article-ID:
1600197 
Fakultät:
Fakultät für Elektrotechnik und Informationstechnik 
Institut:
EIT 2 - Institut für Physik 
Professur:
Düsberg, Georg 
Open Access ja oder nein?:
Ja / Yes