Papers
2
Total Citations
67
H-Index
2
About
Langlang Xu is a rising leader in bio-inspired electronics and flexible sensor technologies, with research that bridges neuromorphic computing and advanced materials engineering. Their most cited work, "Multifunctional human visual pathway-replicated hardware based on 2D materials" (2024, 46 citations), pioneers artificial visual systems that mimic the human retina and neural circuits, pushing the boundaries of AI vision hardware. This breakthrough demonstrates how 2D materials can replicate complex biological pathways, offering a path toward more efficient, brain-like computing. In parallel, Xu developed a "Highly Sensitive, Ultrawide Range, and Multimodal Flexible Pressure Sensor with Hierarchical Microstructure" (2023, 21 citations), introducing a one-step laser printing process that creates hierarchical microstructures—combining surface textures and porous architectures—to dramatically enhance sensor performance. This innovation addresses a critical manufacturing challenge, enabling flexible sensors with exceptional sensitivity and range for wearable electronics and robotics. Xu’s work is notable for its interdisciplinary impact, merging materials science, neuroscience, and device engineering to create hardware that learns from biology. With a growing citation footprint and pioneering contributions to neuromorphic and flexible systems, Langlang Xu is shaping the future of intelligent, adaptive electronics.
Research Focus
Key Achievements
Top Papers
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