H
Hafiz M. W. Khalil
Researcher at University College of Engineering
Publications - 8
Citations - 187
Hafiz M. W. Khalil is an academic researcher from University College of Engineering. The author has contributed to research in topics: Graphene & Dielectric. The author has an hindex of 5, co-authored 7 publications receiving 139 citations. Previous affiliations of Hafiz M. W. Khalil include Sejong University & University of Sargodha.
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Journal ArticleDOI
Highly Stable and Tunable Chemical Doping of Multilayer WS2 Field Effect Transistor: Reduction in Contact Resistance.
TL;DR: A chemical doping technique to achieve low contact resistance by keeping the intrinsic properties of few layers WS2 by using LiF doping in contact engineering of TMDs is reported.
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Revealing of Core Shell Effect on Frequency-Dependent Properties of Bi-based Relaxor/Ferroelectric Ceramic Composites
Mohsin Saleem,Lim Dong Hwan,In-Sung Kim,Minsoo Kim,Adnan Maqbool,Umair Nisar,Syed Atif Pervez,Umer Farooq,Muhammad Umer Farooq,Hafiz M. W. Khalil,Soon-Jong Jeong +10 more
TL;DR: The polarization and strain of the ST26-ST10 composites with the frequency are linked to the stability of the internal random fields created by non-ergodic relaxor phase of seed and the amount of phase change in the ergodic relaxor matrix.
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Percolation phenomena of dielectric permittivity of a microwave-sintered BaTiO3–Ag nanocomposite for high energy capacitor
Mohsin Saleem,Muhammad Shoaib Butt,Adnan Maqbool,Malik Adeel Umer,Muhammad Shahid,Farhan Javaid,Rizwan Ahmed Malik,Hamid Jabbar,Hafiz M. W. Khalil,Lim Dong Hwan,Min-Soo Kim,Bo-Kun Koo,Soon Jong Jeong +12 more
TL;DR: In this article, the Alkoxide-Hydroxide sol-gel process is utilized for the synthesis of barium titanate-silver (BaTiO3-Ag) nanocomposite in an inert atmosphere.
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Copper-Doped Nickle-Oxide Nanoparticles for Photocatalytic Degradation of Erichrome Black-T and Methylene Blue and Its Solar Cell Applications
Zaheer Ahmad,Amir Muhammad Afzal,Muhammad Farooq Khan,Alina Manzoor,Hafiz M. W. Khalil,Sikandar Aftab +5 more
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Controlled n-doping in chemical vapour deposition grown graphene by antimony
TL;DR: In this article, the effects of antimony (Sb) doping on graphene grown by chemical vapour deposition without any significant change in its electrical properties were studied. And they found a shift in the wave numbers of Raman G and two-dimensional (2D) peaks consistent with n-doping and a change in the Fermi level of the graphene into the conduction band.