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基于单双极性有机电化学晶体管的逆变器,按需实现波动性和非波动性。

Single ambipolar OECT-based inverter with volatility and nonvolatility on demand.

作者信息

Cong Shengyu, Chen Junxin, Xie Miao, Deng Ziyi, Chen Chaoyue, Liu Riping, Duan Jiayao, Zhu Xiuyuan, Li Zhengke, Cheng Yuhua, Huang Wei, McCulloch Iain, Yue Wan

机构信息

Guangzhou Key Laboratory of Flexible Electronic Materials and Wearable Devices, Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, School of Materials Science and Engineering, State Key Laboratory of Optoelectronic Materials and Technologies, Sun Yat-sen University, Guangzhou 510275, China.

School of Automation Engineering, University of Electronic Science and Technology of China (UESTC), Chengdu, China.

出版信息

Sci Adv. 2024 Oct 11;10(41):eadq9405. doi: 10.1126/sciadv.adq9405. Epub 2024 Oct 9.

Abstract

Organic electrochemical transistor (OECT)-based inverter introduces new prospects for energy-efficient brain-inspired artificial intelligence devices. Here, we report single-component OECT-based inverters by incorporating ambipolar p(gDPP-V). Notably, p(gDPP-V) shows state-of-the-art ambipolar OECT performances in both conventional (p/n-type mode transconductance of 29/25 S cm) and vertical (transconductance of 297.2/292.4 μS μm under p/n operation) device architectures. Especially, the resulting highly stable vertical OECT-based inverter shows a high voltage gain of 105 V V under a low driving voltage of 0.8 V. The inverter exhibits undiscovered voltage-regulated dual mode: volatile receptor and nonvolatile synapse. Moreover, applications of physiology signal recording and demonstrations of NAND/NOR logic circuits are investigated within the volatile feature, while neuromorphic simulations with a convolutional neural network and image memorizing capabilities are explored under the nonvolatile behavior. The ambipolar OECT-based inverter, capable of both volatile and nonvolatile operations, provides possibilities for the applications of reconfigurable complementary logic circuits in novel neuromorphic computing paradigms.

摘要

基于有机电化学晶体管(OECT)的逆变器为节能型受大脑启发的人工智能设备带来了新前景。在此,我们通过引入双极性p(gDPP-V)报告了基于单组分OECT的逆变器。值得注意的是,p(gDPP-V)在传统(p/n型模式下跨导为29/25 S cm)和垂直(p/n操作下跨导为297.2/292.4 μS μm)器件架构中均展现出最先进的双极性OECT性能。特别是,由此产生的高度稳定的基于垂直OECT的逆变器在0.8 V的低驱动电压下显示出105 V/V的高电压增益。该逆变器展现出未被发现的电压调节双模式:易失性感受器和非易失性突触。此外,在易失性特征范围内研究了生理信号记录的应用以及与非与非逻辑电路的演示,同时在非易失性行为下探索了具有卷积神经网络和图像记忆能力的神经形态模拟。基于双极性OECT的逆变器能够进行易失性和非易失性操作,为可重构互补逻辑电路在新型神经形态计算范式中的应用提供了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66dd/11463256/c0e0e65ec071/sciadv.adq9405-f1.jpg

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