Peer-reviewed journal articles, book chapters, and patents advancing RF/microwave materials and devices.
Wireless Power Transfer in Biomedical Implants In Revision
Jain, I. and Lathiya, P.
Cobalt (Co₂O₃) doped Ni-Co-Zn Ferrites for Very High Frequency and Ultra High Frequency Applications In Revision
Lathiya, P., and Wang, J.
Enhancement in magnetic permeability of Ni‐Co‐Zn ferrites using CuO doping for RF and microwave devices
Lathiya, P., and Wang, J. — Journal of the American Ceramic Society, 105(4), 2678-2689, 2022.
RF Complex Permeability Spectra of Ni-Cu-Zn Ferrites Prepared Under Different Applied Hydraulic Pressures and Durations for Wireless Power Transfer (WPT) Applications
Lathiya, P., Kreuzer, M., Wang, J. — Journal of Magnetism and Magnetic Materials, 499, 166273, 2020.
Effects of the Sintering Temperature on RF Complex Permeability of NiCuCoZn for Near-Field Communication Applications
Lathiya, P., and Wang, J. — IEEE Transactions on Magnetics, 55(2), 1-5, 2019.
Influence of Hydraulic Pressure on Dynamic Magnetic Properties of Ni–Cu–Zn Ferrites
Lathiya, P., and Wang, J. — IEEE Magnetics Letters, 10, 1-5, 2019.
Fabrication of Iron Oxide Nanocomposites for Ultra High Frequency Antennas In Preparation
Lathiya, P., and Wang, J.
Magnetite Nanoparticles (Fe₃O₄) for Radiofrequency and Microwave Applications
Lathiya, P. and Wang, J. — Iron Oxide Nanoparticles, Ed. X. Huang, IntechOpen, 2022.
Near-Field Communications (NFC) for Wireless Power Transfer (WPT): An Overview
Lathiya, P. and Wang, J. — Wireless Power Transfer – Recent Development, Applications and New Perspectives, Ed. Zellagui, M., IntechOpen, 2021.
CuO Doped Ni-Co-Zn for Very High Frequency (VHF) and Ultra High Frequency (UHF) Applications and Process Methodology US Patent
Lathiya, P., and Wang, J. — US 2024/0018051, 2024.