Electrolyte-gated optoelectronic transistors for neuromorphic applications

被引:0
|
作者
Bi, Jinming [1 ]
Li, Yanran [1 ]
Lu, Rong [1 ]
Song, Honglin [1 ]
Jiang, Jie [1 ,2 ]
机构
[1] Cent South Univ, Sch Phys, Hunan Key Lab Nanophoton & Devices, Changsha, Peoples R China
[2] Cent South Univ, Coll Mech & Elect Engn, State Key Lab Precis Mfg Extreme Serv Performance, Changsha 410083, Peoples R China
基金
中国国家自然科学基金;
关键词
neuromorphic computing; electrolyte-gated transistors; artificial synapses; optoelectronic devices; SYNAPTIC TRANSISTORS; ARTIFICIAL SYNAPSES; CAPACITANCE; OPERATION;
D O I
10.1088/1674-4926/24090042
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
The traditional von Neumann architecture has demonstrated inefficiencies in parallel computing and adaptive learning, rendering it incapable of meeting the growing demand for efficient and high-speed computing. Neuromorphic computing with significant advantages such as high parallelism and ultra-low power consumption is regarded as a promising pathway to overcome the limitations of conventional computers and achieve the next-generation artificial intelligence. Among various neuromorphic devices, the artificial synapses based on electrolyte-gated transistors stand out due to their low energy consumption, multimodal sensing/recording capabilities, and multifunctional integration. Moreover, the emerging optoelectronic neuromorphic devices which combine the strengths of photonics and electronics have demonstrated substantial potential in the neuromorphic computing field. Therefore, this article reviews recent advancements in electrolyte-gated optoelectronic neuromorphic transistors. First, it provides an overview of artificial optoelectronic synapses and neurons, discussing aspects such as device structures, operating mechanisms, and neuromorphic functionalities. Next, the potential applications of optoelectronic synapses in different areas such as artificial visual system, pain system, and tactile perception systems are elaborated. Finally, the current challenges are summarized, and future directions for their developments are proposed.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] Biofunctional Electrolyte-Gated Organic Field-Effect Transistors
    Buth, Felix
    Donner, Andreas
    Sachsenhauser, Matthias
    Stutzmann, Martin
    Garrido, Jose A.
    ADVANCED MATERIALS, 2012, 24 (33) : 4511 - 4517
  • [42] Cationic effects on solid polymer electrolyte-gated organic transistors
    Sun, Jun
    Deng, Yadan
    Jiang, Jingzan
    Hu, Yufeng
    Cui, Qiuhong
    Lou, Zhidong
    Hou, Yanbing
    Teng, Feng
    ORGANIC ELECTRONICS, 2022, 106
  • [43] Aqueous electrolyte-gated ZnO transistors for environmental and biological sensing
    Bandiello, E.
    Sessolo, M.
    Bolink, H. J.
    JOURNAL OF MATERIALS CHEMISTRY C, 2014, 2 (48) : 10277 - 10281
  • [44] Transient analysis of electrolyte-gated organic field effect transistors
    Tu, Deyu
    Kergoat, Loig
    Crispin, Xavier
    Berggren, Magnus
    Forchheimer, Robert
    ORGANIC FIELD-EFFECT TRANSISTORS XI, 2012, 8478
  • [45] General Model for Charge Carriers Transport in Electrolyte-Gated Transistors
    Luginieski, Marcos
    Koehler, Marlus
    Serbena, Jose P. M.
    Seidel, Keli F.
    ADVANCED THEORY AND SIMULATIONS, 2023, 6 (05)
  • [46] Electrolyte-Gated Oxides
    Anthony T. Bollinger
    Guy Dubuis
    Xiang Leng
    Xi He
    Ivan Božović
    Journal of Superconductivity and Novel Magnetism, 2020, 33 : 223 - 228
  • [47] Electrolyte-Gated Oxides
    Bollinger, Anthony T.
    Dubuis, Guy
    Leng, Xiang
    He, Xi
    Bozovic, Ivan
    JOURNAL OF SUPERCONDUCTIVITY AND NOVEL MAGNETISM, 2020, 33 (01) : 223 - 228
  • [48] A Static Model for Electrolyte-Gated Organic Field-Effect Transistors
    Tu, Deyu
    Herlogsson, Lars
    Kergoat, Loig
    Crispin, Xavier
    Berggren, Magnus
    Forchheimer, Robert
    IEEE TRANSACTIONS ON ELECTRON DEVICES, 2011, 58 (10) : 3574 - 3582
  • [49] Electrolyte-Gated Field Effect Transistors in Biological Sensing: A Survey of Electrolytes
    Wang, Guan Ying
    Lian, Keryn
    Chu, Ta-Ya
    IEEE JOURNAL OF THE ELECTRON DEVICES SOCIETY, 2021, 9 : 939 - 950
  • [50] Characterization and simulation of electrolyte-gated organic field-effect transistors
    Melzer, Katharina
    Braendlein, Marcel
    Popescu, Bogdan
    Popescu, Dan
    Lugli, Paolo
    Scarpa, Giuseppe
    FARADAY DISCUSSIONS, 2014, 174 : 399 - 411