Room‐Temperature Skyrmionic Synapse in 2D Ferromagnet Fe 3 GaTe 2 Operating via Collective Spin Texture Transformation (Adv. Mater. 49/2026)

Room-Temperature Skyrmionic Synapse Inspired by the human brain, skyrmionic synapses represent an exciting platform for sustainable artificial intelligence. By harnessing collective topological spin-texture transformations in the two-dimensional magnet Fe3GaTe2, this work achieves deterministic room-temperature synaptic behaviour, combining ultralow-energy operation, multi-level memory, and high-performance neuromorphic computing within a scalable van der Waals material platform. More details can be found in the Research Article by Elton J.G. Santos, Xiaoqian Zhang, Peng Li, and co-workers (DOI: 10.1002/adma.202520288).

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Journal
Advanced Materials
Published
2026-09-01
DOI
https://doi.org/10.1002/adma.74794
Primary Topic
2D Materials and Applications
Type
article
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Room‐Temperature Skyrmionic Synapse in 2D Ferromagnet Fe 3 GaTe 2 Operating via Collective Spin Texture Transformation (Adv. Mater. 49/2026)

Jingdi Lu, Liubing He, Pavel Parchinskiy, Jing Tao et al.
Advanced Materials
2D Materials and Applications
article

Room‐Temperature Skyrmionic Synapse in 2D Ferromagnet Fe 3 GaTe 2 Operating via Collective Spin Texture Transformation (Adv. Mater. 49/2026)

Jingdi Lu, Liubing He, Pavel Parchinskiy, Jing Tao, Ruifu Zhang, Xiaoming Ma, Shiming Lei, Yi Hao, Wei Niu, Yuejie Zhang, Jing Teng, Tongji Zhu, Jixiang Huang, Peng Li, Lingfei Wang, PeiYu Cai, Zhen Wang, Elton J.G. Santos, Xiaoqian Zhang, Wanjun Jiang, Jun Xu
article en

Abstract

Room-Temperature Skyrmionic Synapse Inspired by the human brain, skyrmionic synapses represent an exciting platform for sustainable artificial intelligence. By harnessing collective topological spin-texture transformations in the two-dimensional magnet Fe3GaTe2, this work achieves deterministic room-temperature synaptic behaviour, combining ultralow-energy operation, multi-level memory, and high-performance neuromorphic computing within a scalable van der Waals material platform. More details can be found in the Research Article by Elton J.G. Santos, Xiaoqian Zhang, Peng Li, and co-workers (DOI: 10.1002/adma.202520288).

Advanced MaterialsVol. 38(49)
University of Science and Technology of China (CN), Shenzhen University (CN), Hong Kong University of Science and Technology (HK), Huazhong Agricultural University (CN), Nanjing University of Posts and Telecommunications (CN), Hefei National Center for Physical Sciences at Nanoscale (CN), FZU ‒ Institute of Physics of the Academy of Sciences of the Czech Republic (CZ), Ministry of Education (BD), Beijing Academy of Quantum Information Sciences (CN), Shenzhen Technology University (CN), Huazhong University of Science and Technology Hospital (CN), National Laboratory for Superconductivity (CN), University of Chinese Academy of Sciences (CN), National University of Uzbekistan (UZ), Donostia International Physics Center (ES), Huazhong University of Science and Technology (CN), University of Hong Kong (HK), University of Edinburgh (GB), Tsinghua University (CN)
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2D Materials and Applications
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