材料科学
光电效应
异质结
光电二极管
光电子学
鉴定(生物学)
光刻胶
光电导性
光电探测器
植物
生物
作者
Haijuan Wu,Zhicheng Lin,Jinxiu Liu,Chunchi Zhang,Chao Tan,Zegao Wang
标识
DOI:10.1021/acsami.5c01804
摘要
Artificial synapses and neurons with efficient, high-speed, and highly parallel information processing capabilities are considered to be a new direction for the next generation of learning, cognition, and data storage. In this work, we have integrated photodetectors and photoelectric synapse in Ta2PdS6/MoS2 van der Waals heterostructures, which can be used in photodetection and optical artificial neural networks. We have systematically studied the photoelectric characteristics of the blue-violet to near-infrared (405 ∼ 1550 nm) band. At 633 nm, the responsivity and specific detectivity are as high as 590.36 AW-1 and 5.63 × 1011 Jones, respectively. In addition, the heterojunction acquired a persistent photoconductivity behavior due to the presence of interfacial defect states, which was used to simulate the synaptic properties of the human brain, such as transition from short-term memory to long-term memory, paired-pulse facilitation, "learning-forgetting-relearning" behavior, and excitatory-postsynaptic current. In addition, on the basis of photoelectric synapse, the recognition of handwritten digits with different noise levels by an artificial neural network was simulated, which shows a high training accuracy (90%). This study lays a foundation for the development of high-performance heterojunctions and artificial synapses using two-dimensional materials.
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