Xiangyu Ma
Papers
3
Total Citations
30
H-Index
2
About
Xiangyu Ma is pioneering the convergence of advanced optoelectronics and neuromorphic engineering, with a research portfolio that spans halide perovskite heterostructures, multisensory hardware, and human-robot interaction systems. Their most impactful work, "Integration of Perovskite/Low‐Dimensional Material Heterostructures for Optoelectronics and Artificial Visual Systems" (2025, 26 citations), demonstrates how combining tunable-bandgap perovskites with low-dimensional materials creates revolutionary platforms for artificial visual systems—a contribution that addresses critical bottlenecks in next-generation sensing and computing. Ma further extends this vision into neuromorphic computing with "Multisensory integration through high-efficiency neuromorphic hardware" (2025), where they model how biological multisensory fusion can be replicated in silicon to reduce uncertainty and accelerate decision-making. Demonstrating remarkable breadth, Ma also tackles practical robotics challenges in "Design and Implementation of Human-robot Interaction System with Variable Stiffness for Exoskeleton" (2022, 2 citations), proposing intelligent, adaptive interfaces that replace rigid connections for improved user comfort during prolonged wear. This trajectory—from fundamental material heterojunctions to embodied AI systems—positions Ma as a versatile researcher bridging materials science, neural computation, and human-centered robotics. Their work is already shaping how we build devices that see, sense, and interact with the world.
Research Focus
Key Achievements
Top Papers
- 1
- 2Multisensory integration through high-efficiency neuromorphic hardware2 citations · 2025
- 3