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International Journal of Nanomedicine|May 14, 2010
Carbon-covered magnetic nanomaterials and their application for the thermolysis of cancer cellsYang Xu, Meena Mahmood, Ashley Fejleh, et al.Nanotechnology|May 7, 2009
Spectroscopy of shallow InAs/InP quantum wire nanostructuresYu I Mazur, V G Dorogan, O Bierwagen, et al.ACS Applied Materials & Interfaces|June 26, 2026
Interface-Driven Growth Mode Control of 2D GaSe on 3D GaAs Substrates with Distinct Crystallographic OrientationsAida Sheibani, Mohammad Zamani-Alavijeh, Charles Paillard, et al.Nanoscale Research Letters|August 10, 2016
Anisotropic Confinement, Electronic Coupling and Strain Induced Effects Detected by Valence-Band Anisotropy in Self-Assembled Quantum DotsL Villegas-Lelovsky, M D Teodoro, V Lopez-Richard, et al.Nanoscale|August 5, 2025
Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloysSerhiy V Kondratenko, Peter M Lytvyn, Fernando M de Oliveira, et al.Nanotechnology|November 28, 2009
Engineering of 3D self-directed quantum dot ordering in multilayer InGaAs/GaAs nanostructures by means of flux gas compositionP M Lytvyn, Yu I Mazur, E Marega, et al.Scientific Reports|July 6, 2016
Surface effects of vapour-liquid-solid driven Bi surface droplets formed during molecular-beam-epitaxy of GaAsBiJ A Steele, R A Lewis, J Horvat, et al.Nano Letters|December 16, 2015
Defect-Free Self-Catalyzed GaAs/GaAsP Nanowire Quantum Dots Grown on Silicon SubstrateJiang Wu, Andrew Ramsay, Ana Sanchez, et al.Nano Letters|August 12, 2010
Band alignment tailoring of InAs1-xSbx/GaAs quantum dots: control of type I to type II transitionJ He, C J Reyner, B L Liang, et al.RSC Advances|January 4, 2024
The growth of Ge and direct bandgap Ge<sub>1-</sub>Sn<sub></sub> on GaAs (001) by molecular beam epitaxyCalbi Gunder, Fernando Maia de Oliveira, Emmanuel Wangila, et al.Pageof 17