Papers
6
Total Citations
656
H-Index
5
About
Huali Yang is a pioneering researcher at the intersection of flexible electronics, neuromorphic computing, and intelligent sensory systems. Her work centers on developing bio-inspired artificial synapses and nociceptors that mimic human sensory perception, alongside flexible magnetosensitive and strain-sensing devices for wearable technology. Yang’s most impactful contribution is her 2019 paper on an oxide Schottky junction artificial optoelectronic synapse, which has garnered 478 citations and laid foundational work for visual sensing systems that integrate detection, processing, and memory. She further advanced the field with a visible light-triggered artificial photonic nociceptor featuring adaptive threshold tunability—a key step toward next-generation neuromorphic systems. In wearable electronics, her self-powered stretchable strain sensors (66 citations) enable motion monitoring and wireless control, while her 2024 review on flexible magnetosensitive materials (83 citations) highlights her leadership in this rapidly growing domain. Yang’s recent 2025 work on in-device topological encoding for intelligent multimodal interactions signals her continued drive toward scenario-adaptive interfaces. With over 650 total citations and a portfolio spanning fundamental mechanisms to applied devices, Yang is shaping the future of smart, flexible, and perceptive electronic systems.
Research Focus
Key Achievements
Top Papers
- 1An Oxide Schottky Junction Artificial Optoelectronic Synapse478 citations · 2019
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- 5Research progress of flexible magnetic films and devices8 citations · 2022
- 6In‐Device Topological Encoding for Intelligent Multimodal Interactions2 citations · 2025