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Browsing Faculty of Science and Engineering by Subject "2D materials"

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Browsing Faculty of Science and Engineering by Subject "2D materials"

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  • Geiregat, Pieter; Rodá, Carmelita; Tanghe, Ivo; Singh, Shalini; Di Giacomo, Alessio; Lebrun, Delphine; Grimaldi, Gianluca; Maes, Jorick; Van Thourhout, Dries; Moreels, Iwan; Houtepen, Arjan J.; Hens, Zeger (Springer, 2021)
    2D materials are considered for applications that require strong light-matter interaction because of the apparently giant oscillator strength of the exciton transitions in the absorbance spectrum. Nevertheless, the effective ...
  • Courtney, Eileen; Conroy, Michele A.; Bangert, Ursel (Wiley and Sons Ltd, 2020)
    The behaviour of palladium & nickel deposited on mechanically exfoliated samples of 2D transition metal dichalcogenides (MoS2, WS2, and WSe2) via e-beam evaporation was investigated.Sputtering of metals on the flakes allowed ...
  • Li, Shi; Wang, Cong; Yin, Yu; Lewis, Elfed; Wang, Pengfei (De Gruyter, 2020)
    A range of new 2D materials have recently been reported, including topological insulators, transition-metal dichalcogenides, black phosphorus, MXenes, and metal-organic frameworks, which have demonstrated high optical ...
  • Lia, Shi; Wanga, Cong; Yin, Yu; Lewis, Elfed; Wang, Pengfei (De Gruyter Open, 2020)
    A range of new 2D materials have recently been reported, including topological insulators, transitionmetal dichalcogenides, black phosphorus, MXenes, and metal-organic frameworks, which have demonstrated high optical ...
  • Lia, Shi; Wanga, Cong; Yin, Yu; Lewis, Elfed; Wang, Pengfei (De Gruyter, 2020)
    A range of new 2D materials have recently been reported, including topological insulators, transitionmetal dichalcogenides, black phosphorus, MXenes, and metal-organic frameworks, which have demonstrated high optical ...
  • Davitt, Fionán; Stokes, Killian; Collins, Timothy W.; Roldan-Gutierrez, Manuel; Robinson, Fred; Geaney, Hugh; Biswas, Subhajit; Chang, Shery L.Y.; Ryan, Kevin M.; Reid, Gillian; Holmes, Justin D. (American Chemical Society, 2020)
    Engineered two-dimensional (2D) layered materials possess unique physical properties with the potential to improve the performance and endurance of future electronic and energy devices. Here, we report the growth of complex ...

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