Organic Field Effect Transistor‐Based Photonic Synapses: Materials, Devices, and Applications
Фотонные синапсы на основе органических полевых транзисторов: материалы, устройства и применения
2021-09-05
SCID: 54.1/dn88782e
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artificial visual systemsneuromorphic computingorganic field-effect transistorsphotoelectric dual modulationphotonic artificial synapses
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Abstract (AI)
Abstract Photonic artificial synapses‐based neuromorphic computing systems have been regarded as promising candidates for replacing von Neumann‐based computing systems due to the high bandwidth, ultrafast signal transmission, low energy consumption, and wireless communication. Although significant progress has been made in developing varied device structures for synaptic emulation, organic field‐effect transistors (OFETs) hold the compelling advantages of facile preparation, liable integration, and versatile structures. As a powerful and effective platform for photonic synapses, OFETs can fulfill not only the simulation of simple synaptic functions, but also complex photoelectric dual modulation and simulation of the visual system. Herein, an overview of OFET‐based photonic synapses, including functional materials, device configurations, and innovative applications is provided. Meanwhile, rules for selecting materials, mechanism of photoelectric conversion, and fabrication techniques of devices are also highlighted. Finally, challenges and opportunities are all discussed, providing solid guidance for multilevel memory, multi‐functional tandem artificial neural system, and artificial intelligence.
Key Findings
1
OFET-based photonic synapses can emulate both basic synaptic functions and complex photoelectric dual-modulation behaviors, including visual-system simulation.
2
Organic field-effect transistors provide facile preparation, reliable integration, and versatile device structures for implementing photonic artificial synapses.
3
Photonic artificial synapses are promising neuromorphic-computing components because they offer high bandwidth, ultrafast signal transmission, low energy consumption, and wireless communication.
4
Remaining challenges and opportunities are identified for developing multilevel memory, multifunctional tandem artificial neural systems, and artificial-intelligence technologies.
5
The review organizes functional materials, device configurations, photoelectric-conversion mechanisms, fabrication techniques, and applications of OFET-based photonic synapses.
Research Object
organic field-effect transistor (OFET)-based photonic artificial synapses
Research Subject
their functional materials, device configurations, photoelectric conversion mechanisms, fabrication, synaptic emulation capabilities, and neuromorphic applications
Publication Details
Publication Date
2021-09-05
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