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Emerging Low-Dimensional Nanomaterials and Their Heterostructures
Wang, H. et al. Resonance Coupling in Heterostructures Composed of Silicon Nanosphere and Monolayer WS2: A Magnetic-Dipole-Mediated Energy Transfer Process. ACS Nano13, 1739–1750 (2019).CrossRefGoogle ScholarPubMed
2
Lepeshov, S. et al. Tunable Resonance Coupling in Single Si Nanoparticle–Monolayer WS2 Structures. ACS Appl. Mater. Interfaces8 (2018).Google Scholar
3
DiStefano, G., et al, J.. Topology of transition metal dichalcogenides: the case of the core–shell architecture. Nanoscale12, 23897–23919 (2020).CrossRefGoogle ScholarPubMed
4
Wu, Z.-Q. et al. Gap-Mode Surface-Plasmon-Enhanced Photoluminescence and Photoresponse of MoS2. Advanced Materials30, (2018).CrossRefGoogle ScholarPubMed
5
Kuznetsov, A. I., Miroshnichenko, A. E., Brongersma, M. L., Kivshar, Y. S. & Luk'yanchuk, B.Optically resonant dielectric nanostructures. Science354, (2016).CrossRefGoogle ScholarPubMed
6
Grunes, L. A., Leapman, R. D., Wilker, C. N., Hoffmann, R. & Kunz, A. B.Oxygen K near-edge fine structure: An electron-energy-loss investigation with comparisons to new theory for selected 3 d Transition-metal oxides. Phys. Rev. B25, 7157–7173 (1982).CrossRefGoogle Scholar
7
Eljarrat, A. et al. Retrieving the electronic properties of silicon nanocrystals embedded in a dielectric matrix by low-loss EELS. Nanoscale6, 14971–14983 (2014).CrossRefGoogle Scholar
8
Mkhoyan, K. A., Babinec, T., Maccagnano, S. E., Kirkland, E. J. & Silcox, J.Separation of bulk and surface-losses in low-loss EELS measurements in STEM. Ultramicroscopy107, 345–355 (2007).CrossRefGoogle ScholarPubMed
9
Forcherio, G. T., Benamara, M. & Roper, D. K.Electron Energy Loss Spectroscopy of Hot Electron Transport between Gold Nanoantennas and Molybdenum Disulfide by Plasmon Excitation. Advanced Optical Materials5, 1600572 (2017).Google Scholar