MXene‑Ti3C2Tx‑based neuromorphic computing: physical mechanisms, performance enhancement, and cutting‑edge computing
https://www.eurekalert.org/news-releases/1093348
"Overcomes CMOS bottlenecks, delivering sub-femtojoule synaptic events/ nanosecond response at sub-1 V operation... enables 5G/6G edge intelligence, implantable neuro-prosthetics... MXene devices flexible, multimodal, biocompatible... ECM, VCM, electron tunneling, charge trapping core switching mechanisms... steep-slope TFETs, NCFETs, floating-gate transistors built from MXene, exhibiting on/off ratios >106, sub-0.5 V SET, endurance >104 cycles... bendable e-skin/ retinal implant substrates... in-memory computing"
Related:
Programmable 2D nanochannels achieve brain-like memory
https://phys.org/news/2025-08-programmable-2d-nanochannels-brain-memory.html
Electro-optical Mott neurons made of niobium dioxide created for brain-inspired computing
https://techxplore.com/news/2025-08-electro-optical-mott-neurons-niobium.html
First supercomputer with >2 billion artificial neurons mimics macaque brain, human brain-inspired AI
https://www.scmp.com/news/china/science/article/3320588/how-chinas-new-darwin-monkey-could-shake-future-ai-world-first?module=inline&pgtype=article
Magnetic tunnel junctions mimic synapse behavior for energy-efficient neuromorphic computing
https://techxplore.com/news/2025-09-magnetic-tunnel-junctions-mimic-synapse.html
Scientists create nanofluidic chip with 'brain-like' memory pathways
https://phys.org/news/2025-10-scientists-nanofluidic-chip-brain-memory.html
Comments
Post a Comment