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Multi-terminal memtransistors from polycrystalline monolayer molybdenum disulfide

Author

Listed:
  • Vinod K. Sangwan

    (Northwestern University)

  • Hong-Sub Lee

    (Northwestern University)

  • Hadallia Bergeron

    (Northwestern University)

  • Itamar Balla

    (Northwestern University)

  • Megan E. Beck

    (Northwestern University)

  • Kan-Sheng Chen

    (Northwestern University)

  • Mark C. Hersam

    (Northwestern University
    Northwestern University
    Northwestern University)

Abstract

Polycrystalline monolayer molybdenum disulfide is used to fabricate a multi-terminal device combining a memristor and a transistor, which can mimic biological neurons with multiple synapses for neuromorphic computing applications.

Suggested Citation

  • Vinod K. Sangwan & Hong-Sub Lee & Hadallia Bergeron & Itamar Balla & Megan E. Beck & Kan-Sheng Chen & Mark C. Hersam, 2018. "Multi-terminal memtransistors from polycrystalline monolayer molybdenum disulfide," Nature, Nature, vol. 554(7693), pages 500-504, February.
  • Handle: RePEc:nat:nature:v:554:y:2018:i:7693:d:10.1038_nature25747
    DOI: 10.1038/nature25747
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    Cited by:

    1. Muhammad Imran Qureshi & Nohman Khan & Shazia Qayyum & Subha Malik & Sanil S Hishan & Thurasamy Ramayah, 2020. "Classifications of Sustainable Manufacturing Practices in ASEAN Region: A Systematic Review and Bibliometric Analysis of the Past Decade of Research," Sustainability, MDPI, vol. 12(21), pages 1-19, October.
    2. Setoudeh, F. & Sedigh, A. Khaki, 2021. "Nonlinear analysis and minimum L2-norm control in memcapacitor-based hyperchaotic system via online particle swarm optimization," Chaos, Solitons & Fractals, Elsevier, vol. 151(C).
    3. Setoudeh, Farbod & Dousti, Massoud, 2022. "Analysis and implementation of a meminductor-based colpitts sinusoidal oscillator," Chaos, Solitons & Fractals, Elsevier, vol. 156(C).
    4. Rong Bao & Shuiyuan Wang & Xiaoxian Liu & Kejun Tu & Jingquan Liu & Xiaohe Huang & Chunsen Liu & Peng Zhou & Shen Liu, 2024. "Neuromorphic electro-stimulation based on atomically thin semiconductor for damage-free inflammation inhibition," Nature Communications, Nature, vol. 15(1), pages 1-13, December.

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