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Organic synaptic devices for neuromorphic systems

机译:用于神经晶体系统的有机突触装置

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摘要

The development of synaptic devices with biologically-inspired information processing functions and low power consumption is critically important for the hardware implementation of highly anticipated brain-like computing systems. Organic materials arc regarded as the most promising candidates for synaptic devices and bio-electronics due to several advantages such as low cost, easy processability, mechanical flexibility and ductility. In this review, a description of the current advances in organic synaptic devices, including two-terminal memristors and three-terminal transistors, is provided. Organic two-terminal memristors with the characteristics of non-volatility and reasonable on/off switching ratio are reported to be popular synaptic devices. On the other hand, organic memristive and electrochemical electric-double-layer transistors can accurately select working devices by applying a gate spike to the corresponding gate electrode. Therefore, these three-terminal organic devices provide an alternative approach to the development of neuromorphic systems. Lastly, the novel applications of organic synaptic devices are discussed, and some current challenges are presented.
机译:具有生物启发信息处理功能和低功耗的突触装置的开发对于高度预期的大脑计算系统的硬件实现至关重要。由于诸如低成本,易于加工性,机械柔韧性和延展性,因此有机材料被认为是突触装置和生物电子产品的最有希望的候选者。在该审查中,提供了有机突触装置中的当前进步的描述,包括双端子忆阻器和三端晶体管。据报道,有机双端子椎间盘具有非易波动和合理的开关比的特性,是流行的突触装置。另一方面,有机存储器和电化学双层晶体管可以通过将栅极峰值施加到相应的栅电极来精确选择工作装置。因此,这三个终端有机装置提供了神经形态系统的发展的替代方法。最后,讨论了有机突触装置的新颖应用,并提出了一些当前的挑战。

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