Munir H. Nayfeh

University of Illinois, Urbana-Champaign, Urbana-Champaign, IL 
Condensed Matter Physics
"Munir Nayfeh"
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David C Humm grad student 1990
Allan P. Archer grad student 2001 UIUC
Gennadiy A. Belomoin grad student 2006 UIUC
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Elhalawany N, Mantey K, Hoang T, et al. (2020) Iron oxide–Si nanoparticle magnetic core–shell induced by the interaction of d-orbitals of Fe2+ with reconstructed Si dimer-like defects Aip Advances. 10: 055221
Enders B, Kocyigit A, Bahceci E, et al. (2019) Wet non-thermal integration of nano binary silicon-gold system with strong plasmonic and luminescent characteristics Aip Advances. 9: 095039
Bahceci E, Enders B, Yamani Z, et al. (2019) Proximal probe-like nano structuring in metal-assisted etching of silicon Aip Advances. 9: 055228
Malloy J, Mantey K, Maximenko Y, et al. (2018) Experimental and theoretical study of ultraviolet-induced structural/optical instability in nano silicon-based luminescence Journal of Applied Physics. 124: 044501
Kocyigit A, Elhalawany N, Bahceci E, et al. (2018) Wideband luminescence from bandgap-matched Mg-based Si core-shell geometry nanocomposite Aip Advances. 8: 055324
Kocyigit A, Bakir M, Cifci OS, et al. (2018) Imparting optical functionality to aromatic thermosetting copolyester by luminescent silicon nanoparticles cross-linked via in situ thermal polymerization reaction European Polymer Journal. 103: 351-361
Chowdhury FI, Alnuaimi A, E-Atab N, et al. (2017) Corrigendum to “Enhanced performance of thin-film amorphous silicon solar cells with a top film of 2.85 nm silicon nanoparticles” [Solar Energy 125 (2016) 332–338] Solar Energy. 153: 784
Hoang T, Elhalawany N, Enders B, et al. (2016) Strong 1.54 μm cathodoluminescence from core-shell structures of silicon nanoparticles and erbium Applied Physics Letters. 109: 261103
Chowdhury FI, Alnuaimi A, El-Atab N, et al. (2016) Enhanced performance of thin-film amorphous silicon solar cells with a top film of 2.85nm silicon nanoparticles Solar Energy. 125: 332-338
Maximenko Y, Gorin D, Ates H, et al. (2016) Layer-by-Layer Growth of Charged Polymers and Silicon Nanoparticles Bionanoscience. 6: 147-152
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