Papers
6
Total Citations
92
H-Index
4
About
Dr. Baker Mohammad is a leading researcher at the intersection of nanotechnology, energy harvesting, and secure embedded systems. His work spans three critical domains: developing high-performance triboelectric nanogenerators (TENGs) using advanced 2D materials like MXene, designing energy-efficient heterogeneous System-on-Chip (SoC) architectures for autonomous nano-UAVs, and creating lightweight in-memory computing solutions for hardware security. His most cited work (58 citations) introduces a novel electrode engineering approach combining 2D Ti₃C₂Tₓ-MXene sheets with chloride salts to create flexible, durable TENGs with exceptional power density—a breakthrough for self-powered wearable electronics. Dr. Mohammad also leads the development of RISC-V based SoCs for secure nano-UAV navigation, addressing critical challenges in ultra-low-power computing for autonomous drones. His contributions to hardware security include efficient in-memory computing architectures that protect against side-channel attacks while maintaining minimal energy footprints. Additionally, his work on hyperdimensional computing for event-based robotic grasping demonstrates innovative approaches to perception in industrial automation. With over 90 citations across his most impactful publications, Dr. Mohammad’s research continues to shape the future of energy-autonomous, secure, and intelligent microsystems.
Research Focus
Key Achievements
Top Papers
- 1
- 2A Heterogeneous RISC-V Based SoC for Secure Nano-UAV Navigation13 citations · 2024
- 3
- 4
- 5A Heterogeneous RISC-V based SoC for Secure Nano-UAV Navigation3 citations · 2024
- 6