dr. Muhammad Shahid Arshad
Short biography
Dr. Muhammad Shahid Arshad has received his B.Sc (Hons) Physics degree from Punjab University, Lahore Pakistan session 2004-2008. Then, he continues his Master in applied physics from Royal Institute of Technology (KTH), Stockholm, Sweden session 2008-2011. After the successful completion of his master degree he started his PhD from Dec 2011 at the Department for Nanostructured Materials, K7, Jožef Stefan Institute, Ljubljana, Slovenia, under supervision of Prof. Spomenka Kobe (Co-supervisor Assist. Prof. Kristina Žužek Rožman). During his PhD, he worked on magnetization reversal and magnetic domain configurations in Co-Pt nanostructures. He finished his PhD on Jan 2016 and then immediately started working as a researcher in Department for Environmental Sciences and Engineering, D05, National institute of Chemistry, Ljubljana, Slovenia. Where he worked on visible light driven TiO2 based photocatalysis until Oct 2017. Since 2018 he is employed as a researcher at the Laboratory for Tribology and Interface nanotechnology, University of Ljubljana, Slovenia.
Reference Projects:
Publications
- The W-cluster reactive sites interaction model for WDLC coatings with ionic liquids
M. S. Arshad, L. Čoga, T. Geue, J. Kovač, S. M. A. Cruz, M. Kalin, Tribology International 185 (2023) 108550 1-11 - Physicochemical and tribological characterizations of WDLC coatings and ionic-liquid lubricant additives : potential candidates for low friction under boundary-lubrication conditions
M. S. Arshad, J. Kovač, S. Cruz, M. Kalin, Tribology International 151 (2020) 106482 1-10 - Determination of Schottky barrier height and enhanced photoelectron generation in novel plasmonic immobilized multisegmented (Au/TiO2) nanorod arrays (NRAs) suitable for solar energy conversion applications
M. S. Arshad, Š. Trafela, K. Ž. Rožman, J. Kovač, P. Djinović, A. Pintar, Journal of Materials Chemistry C 5 (2017) 10509-10516 - Electron trapping energy states of TiO2−WO3 composites and their influence on photocatalytic degradation of bisphenol
G. Žerjav, M. S. Arshad, P. Djinović, J. Zavašnik, A. Pintara, Applied Catalysis B: Environmental 209 (2017) 273–284 - Improved electron-hole separation and migration in anatase TiO2 nanorod/reduced graphene oxide composites and their influence on photocatalytic performance
G. Žerjav, M. S. Arshad, P. Djinović, I. Junkar, J. Kovač, J. Zavašnik, A. Pintar, Nanoscale 9 (2017) 4578–4592 - The role of the crystal orientation (c-axis) on switching field distribution and the magnetic domain configuration in electrodeposited hcp Co–Pt nanowires
M. S. Arshad, P. M. Proenca, Š. Trafela, V. Neu, U. Wolff, S. Stienen, M. Vazques, S. Kobe, K. Ž. Rožman, Journal of Physics D: Applied Physics 49 (2016) 185006 1-13 - Magnetization-switching study of fcc Fe-Pd nanowire and nanowire arrays studied by in-field magnetic force microscopy
D. Pečko, M. S. Arshad, S. Šturm, S. Kobe, K. Ž. Rožman, IEEE Transaction on Magnetics 51 (2015) 2300404 1-4 - Multimodal hybrid FePt/SiO2/Au nanoparticles for nanomedical applications ecombining photothermal stimulation and manipulation with an external magnetic field
N. Kostevšek, K. Ž. Rožman, M. S. Arshad, M. Spreitzer, S. Kobe, S. Šturm, The Journal of Physical Chemistry C 119 (2015) 16374-16382 - Angular dependence of the coercivity in electrodeposited Co-Pt nanostructures with a tube-wire morphology
M. S. Arshad, D. Pečko, S. Šturm, J. Escrig, M. Komelj, P. J. Mcguiness, S. Kobe, K. Ž. Rožman, IEEE International Magnetics 50 (2014) 2302904 1-4 - Effect of magnetocrystalline anisotropy on the magnetic properties of electrodeposited Co-Pt nanowires
M. S. Arshad, S. Šturm, J. Zavašnik, P. A. Espejo, J. Escrig, M. Komelj, P. J. Mcguiness, S. Kobe, K. Ž. Rožman, Journal of Nanoparticle Research 16 (2014) 2688 1-16 - Microstructure and magnetic properties of electrodeposited Co-Pt nanowires (NWs) with diameters below 100 nm
M. S. Arsahd, J. Zavašnik, S. Šturm, P. J. Mcguiness, S. Kobe, K. Ž. Rožman, IEEE Magnetics Letters 5 (2014), 6700204 1-4 - Electrodeposited hard-magnetic Fe[sub](50)Pd[sub](50) nanowires from an ammonium-citrate-based bath
D. Pečko, K. Ž. Rožman, N. Kostevšek, M. S. Arshad, B. Markoli, Z. Samardžija, S. Kobe, Journal of Alloys and Compounds 605 (2014) 71-79 - Sonochemical synthesis of mackinawite and the role of Cu addition on phase transformations in the FeS system
J. Zavašnik, N. Stanković, M. S. Arshad, A. Rečnik, Journal of Nanoparticle Research 16 (2014) 2223 1-13 - more
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