PhD in Mechatronics Engineering (with specialisation in Printed Electronics) from JNU, South Korea (2015-2018)
MS in Electronics Engineering (with specialisation in Microelecronics) from GIK Institute, Pakistan (2013-2015)
BS in Electronic Engineering from GIK Institute, Pakistan (2007-2011)
1- Muhammad Muqeet Rehman et. al. “Triboelectric Nanogenerators for Future Space Missions.” Nano-Micro Letters 18, no. 1 (2026): 98.
2- Muhammad Muqeet Rehman et. al. “High Performance Triboelectric Nanogenerator Based on Metal–Organic Framework Composites for IoT‐Assisted Wireless Healthcare Monitoring.” Energy & Environmental Materials 8, no. 5 (2025): e70010.
3- Muhammad Muqeet Rehman et. al., “Adaptable self-powered humidity sensor based on a highly permeable, hierarchically fibrous, and chaotically textured sustainable biowaste.” Sustainable Materials and Technologies 44 (2025): e01374.
4- Muhammad Muqeet Rehman et. al., “2D materials-memristive devices nexus: From status quo to Impending applications.” Progress in Materials Science 152 (2025): 101471.
5- Muhammad Muqeet Rehman et. al., “Wireless flexi-sensor using narrow band quasi colloidal 3D tin telluride (SnTe) for respiratory, environment, and proximity sensing.” Chemical Engineering Journal 495 (2024): 153376.
6- Muhammad Muqeet Rehman et. al., “Advanced sensing system for sleep bruxism across multiple postures via EMG and machine learning.” Sensors 24, no. 16 (2024): 5426.
7- Muhammad Muqeet Rehman et. al., “High performance triboelectric nanogenerator based on purified chitin nanopaper for the applications of self-powered humidity sensing, gait monitoring, and hyperhidrosis sensor.” Sustainable Materials and Technologies 40 (2024): e00867.
8- Muhammad Muqeet Rehman et. al., “3D hierarchical microcubic morphological composite and its application for Bi-functional Humidity/Pressure sensing in TENG architecture.” Chemical Engineering Journal 485 (2024): 149660.
9- Muhammad Muqeet Rehman et. al., “Edible rice paper-based multifunctional humidity sensor powered by triboelectricity.” Sustainable Materials and Technologies 36 (2023): e00596.
10- Muhammad Muqeet Rehman et. al., “Biomaterial-based nonvolatile resistive memory devices toward ecofriendliness and biocompatibility.” ACS Applied Electronic Materials 3, no. 7 (2021): 2832-2861.
11- Muhammad Muqeet Rehman et. al., “Decade of 2D-materials-based RRAM devices: a review.” Science and technology of advanced materials 21, no. 1 (2020): 147-186.
12- Muhammad Muqeet Rehman et. al., “Encapsulation of polyvinyl alcohol based flexible temperature sensor through spatial atmospheric atomic layer deposition system to enhance its lifetime.” Thin Solid Films 673 (2019): 44-51.
13- Muhammad Muqeet Rehman et. al., “3D printing for soft robotics–a review.” Science and technology of advanced materials 19, no. 1 (2018): 243-262.
14- Muhammad Muqeet Rehman et. al., “Highly flexible and electroforming free resistive switching behavior of tungsten disulfide flakes fabricated through advanced printing technology.” Semiconductor Science and Technology 32, no. 9 (2017): 095001.
15- Muhammad Muqeet Rehman et. al., “Resistive switching phenomena induced by the heterostructure composite of ZnSnO3 nanocubes interspersed ZnO nanowires.” Journal of Materials Chemistry C 5, no. 22 (2017): 5528-5537.
16- Muhammad Muqeet Rehman et. al., “A two-dimensional hexagonal boron nitride/polymer nanocomposite for flexible resistive switching devices.” Journal of Materials Chemistry C 5, no. 4 (2017): 862-871.
17- Muhammad Muqeet Rehman et. al., “Resistive switching in all-printed, flexible and hybrid MoS2-PVA nanocomposite based memristive device fabricated by reverse offset.” Scientific reports 6, no. 1 (2016): 36195.
18- Muhammad Muqeet Rehman et. al., “Enhanced resistive switching in all-printed, hybrid and flexible memory device based on perovskite ZnSnO3 via PVOH polymer.” Polymer 100 (2016): 102-110.