Side ionic-gated perovskite/graphene heterojunction synaptic transistor with bipolar photoresponse for neuromorphic computing

被引:0
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作者
XIAOYING HE [1 ,2 ]
MINGHAO XU [1 ]
SHILIN LIU [1 ]
KUN WANG [1 ]
BOWEN CAO [1 ]
LAN RAO [1 ]
XIANGJUN XIN [1 ]
机构
[1] School of Electronic Engineering and Beijing Key Laboratory of Space-Ground Interconnection and Convergence,Beijing University of Posts and Telecommunications
[2] Key Laboratory of Semiconductor Materials Science, Beijing Key Laboratory of Low Dimensional Semiconductor Materials and Devices,Institute of Semiconductors, Chinese Academy of
关键词
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中图分类号
TB34 [功能材料]; TN32 [半导体三极管(晶体管)];
学科分类号
080501 ;
摘要
By combining the good charge transport property of graphene and the excellent photo-carrier generation characteristic of perovskite nanocrystal, we propose and demonstrate an ionic-gated synaptic transistor based on Cs PbBr3∕graphene heterojunction for bipolar photoresponse. Controlling the potential barrier of the Cs PbBr3∕graphene heterojunction by the ionic-gate of the electrical double-layer effect can promote the separation of photogenerated carriers and effectively retard their recombination. Using the ionic-gate-tunable Fermi level of graphene and the pinning effect of perovskite nanocrystal, the bipolar photocurrent responses corresponding to the excitatory and inhibitory short-term and long-term plasticity are realized by adjusting the negative gate bias. A series of synaptic functions including logic operation, Morse coding, the optical memory and electrical erasure effect, and light-assisted re-learning have also been demonstrated in an optoelectronic collaborative pathway. Furthermore, the excellent optical synaptic behaviors also contribute to the handwritten font recognition accuracy of ~95% in artificial neural network simulations. The results pave the way for the fabrication of bipolar photoelectric synaptic transistors and bolster new directions in the development of future integrated human retinotopic vision neuromorphic systems.
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页码:1167 / 1174
页数:8
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