Zipei Tao
Papers
1
Total Citations
34
H-Index
1
About
Zipei Tao is a rising researcher in the field of neuromorphic computing and advanced semiconductor devices. Their primary research focuses on oxide-based memristors for artificial synapses and nociceptors, leveraging CMOS-compatible fabrication to bridge the gap between emerging device concepts and industrial scalability. Tao’s most cited work, "An Oxide-Based Bilayer ZrO₂/IGZO Memristor for Synaptic Plasticity and Artificial Nociceptor" (2023, 34 citations), demonstrates a pivotal contribution: the integration of bilayer oxide structures to mimic both biological learning behaviors and pain-sensing functions in a single device. By fabricating these memristors using 45-nm CMOS technology on Si/SiO₂ substrates, Tao has shown that complex synaptic and nociceptive functionalities can be achieved with industry-standard processes, a critical step toward practical neuromorphic hardware. This work not only advances the understanding of oxide-based resistive switching but also opens pathways for energy-efficient, brain-inspired computing systems. With growing citation impact, Zipei Tao is establishing themselves as a promising voice in the development of next-generation electronic synapses and sensory-mimicking devices.
Research Focus
Key Achievements
Top Papers
- 1