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Light-Stimulated Synaptic Transistors Fabricated by a Facile Solution Process Based on Inorganic Perovskite Quantum Dots and Organic Semiconductors

机译:基于无机钙钛矿量子点和有机半导体的易于溶液溶液工艺制造的光刺激突触晶体管

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摘要

Implementation of artificial intelligent systems with light-stimulated synaptic emulators may enhance computational speed by providing devices with high bandwidth, low power computation requirements, and low crosstalk. One of the key challenges is to develop light-stimulated devices that can response to light signals in a neuron-/synapse-like fashion. A simple and effective solution process to fabricate light-stimulated synaptic transistors (LSSTs) based on inorganic halide perovskite quantum dots (IHP QDs) and organic semiconductors (OSCs) is reported. Blending IHP QDs and OSCs not only improves the charge separation efficiency of the photoexcited charges, but also induces delayed decay of the photocurrent in the IHP QDs/ OSCs hybrid film. The enhanced charge separation efficiency results in high photoresponsivity, while the induced delayed decay of the photocurrent is critical to achieving light-stimulating devices with a memory effect, which are important for achieving high synaptic performance. The LSSTs can respond to light signals in a highly neuron-/synapse-like fashion. Both short-term and long-term synaptic behaviors have been realized, which may lay the foundation for the future implementation of artificial intelligent systems that are enabled by light signals. More significantly, LSSTs are fabricated by a facile solution process which can be easily applied to large-scale samples.
机译:具有光刺激突触仿真器的人工智能系统的实现可以通过提供具有高带宽,低功耗计算要求和低串扰的设备来提高计算速度。其中一个关键挑战是开发光刺激的设备,可以响应神经元/突触状时尚的光信号。报告了一种简单且有效的解决方案方法,用于制造基于无机卤化物钙钛矿量子点(IHP QD)和有机半导体(OSC)的光刺激突触晶体管(LSSTS)。混合IHP QD和OSC不仅可以提高光屏蔽电荷的电荷分离效率,而且还会在IHP QDS / OSCS混合膜中引起光电流的延迟衰减。增强的电荷分离效率导致高光反对子,而光电流的诱导延迟衰减对于实现具有记忆效应的光刺激装置至关重要,这对于实现高突触性能是重要的。 LSSTS可以在高度神经元/突触状时尚中响应光信号。已经实现了短期和长期突触行为,这可能为未来的智能系统的实施来奠定了基础,这些智能系统通过光信号实现。更显着,LSSTS由容易解决方案过程制造,该过程可以容易地应用于大规模样品。

著录项

  • 来源
    《Small》 |2019年第11期|共8页
  • 作者单位

    Interdisciplinary Materials Research Center School of Materials Science and Engineering Tongji University Shanghai 201804 P. R. China;

    Interdisciplinary Materials Research Center School of Materials Science and Engineering Tongji University Shanghai 201804 P. R. China;

    Interdisciplinary Materials Research Center School of Materials Science and Engineering Tongji University Shanghai 201804 P. R. China;

    Interdisciplinary Materials Research Center School of Materials Science and Engineering Tongji University Shanghai 201804 P. R. China;

    State Key Laboratory of Optoelectronic Materials and Technologies Guangdong Province Key Laboratory of Display Material and Technology School of Electronics and Information Technology Sun Yat-sen University Guangzhou 510275 P. R. China;

    Interdisciplinary Materials Research Center School of Materials Science and Engineering Tongji University Shanghai 201804 P. R. China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    blended materials; inorganic halide perovskite quantum dots; lightstimulated synaptic transistors; organic semiconductors; solution process;

    机译:混纺材料;无机卤化物钙钛矿量子点;淡色突触晶体管;有机半导体;解决方案过程;

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