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Organic iontronic memristors for artificial synapses and bionic neuromorphic computing
Xia, Yang, Zhang, Cheng, Xu, Zheng, Lu, Shuanglong, Cheng, Xinli, Wei, Shice, Yuan, Junwei, Sun, Yanqiu, Li, Yang
Published in Nanoscale (25.01.2024)
Published in Nanoscale (25.01.2024)
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Brain-like optoelectronic artificial synapses with ultralow energy consumption based on MXene floating-gates for emotion recognition
Cao, Yixin, Zhao, Chun, Zhao, Tianshi, Sun, Yi, Liu, Zhengjun, Li, Xianyao, Yin, Li, Gu, Jiangmin, Ren, Hao, Geng, Xianwei, Yao, Jian, Kang, Lixing
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Published in Journal of materials chemistry. C, Materials for optical and electronic devices (09.03.2023)
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Ferroelectric artificial synapse for neuromorphic computing and flexible applications
Li, Qing-Xuan, Liu, Yi-Lun, Cao, Yuan-Yuan, Wang, Tian-Yu, Zhu, Hao, Ji, Li, Liu, Wen-Jun, Sun, Qing-Qing, Zhang, David Wei, Chen, Lin
Published in Fundamental research (Beijing) (01.11.2023)
Published in Fundamental research (Beijing) (01.11.2023)
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Directional Formation of Conductive Filaments for a Reliable Organic-Based Artificial Synapse by Doping Molybdenum Disulfide Quantum Dots into a Polymer Matrix
Li, Mingjun, An, Haoqun, Kim, Youngjin, An, Jun Seop, Li, Ming, Kim, Tae Whan
Published in ACS applied materials & interfaces (05.10.2022)
Published in ACS applied materials & interfaces (05.10.2022)
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Energy-efficient flexible photoelectric device with 2D/0D hybrid structure for bio-inspired artificial heterosynapse application
Meng, Jia-Lin, Wang, Tian-Yu, Chen, Lin, Sun, Qing-Qing, Zhu, Hao, Ji, Li, Ding, Shi-Jin, Bao, Wen-Zhong, Zhou, Peng, Zhang, David Wei
Published in Nano energy (01.05.2021)
Published in Nano energy (01.05.2021)
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A Leaky‐Integrate‐and‐Fire Neuron Analog Realized with a Mott Insulator
Stoliar, Pablo, Tranchant, Julien, Corraze, Benoit, Janod, Etienne, Besland, Marie‐Paule, Tesler, Federico, Rozenberg, Marcelo, Cario, Laurent
Published in Advanced functional materials (01.03.2017)
Published in Advanced functional materials (01.03.2017)
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Enhanced synaptic characteristics of H x WO3-based neuromorphic devices, achieved by current pulse control, for artificial neural networks
Nishioka, Daiki, Tsuchiya, Takashi, Higuchi, Tohru, Terabe, Kazuya
Published in Neuromorphic computing and engineering (01.09.2023)
Published in Neuromorphic computing and engineering (01.09.2023)
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Phase synchronization between two thermo-photoelectric neurons coupled through a Josephson Junction
Fossi, Jules Tagne, Deli, Vandi, Edima, Hélène Carole, Njitacke, Zeric Tabekoueng, Kemwoue, Florent Feudjio, Atangana, Jacques
Published in The European physical journal. B, Condensed matter physics (01.04.2022)
Published in The European physical journal. B, Condensed matter physics (01.04.2022)
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Physics inspired compact modelling of BiFeO3 based memristors
Yarragolla, Sahitya, Du, Nan, Hemke, Torben, Zhao, Xianyue, Chen, Ziang, Polian, Ilia, Mussenbrock, Thomas
Published in Scientific reports (28.11.2022)
Published in Scientific reports (28.11.2022)
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Enhanced synaptic characteristics of H x WO 3 -based neuromorphic devices, achieved by current pulse control, for artificial neural networks
Nishioka, Daiki, Tsuchiya, Takashi, Higuchi, Tohru, Terabe, Kazuya
Published in Neuromorphic computing and engineering (01.09.2023)
Published in Neuromorphic computing and engineering (01.09.2023)
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Physics inspired compact modelling of Formula: see text based memristors
Yarragolla, Sahitya, Du, Nan, Hemke, Torben, Zhao, Xianyue, Chen, Ziang, Polian, Ilia, Mussenbrock, Thomas
Published in Scientific reports (28.11.2022)
Published in Scientific reports (28.11.2022)
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Physics inspired compact modelling of $$\hbox {BiFeO}_3$$ based memristors
Yarragolla, Sahitya, Du, Nan, Hemke, Torben, Zhao, Xianyue, Chen, Ziang, Polian, Ilia, Mussenbrock, Thomas
Published in Scientific reports (28.11.2022)
Published in Scientific reports (28.11.2022)
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Ultralow Power Wearable Heterosynapse with Photoelectric Synergistic Modulation
Wang, Tian‐Yu, Meng, Jia‐Lin, He, Zhen‐Yu, Chen, Lin, Zhu, Hao, Sun, Qing‐Qing, Ding, Shi‐Jin, Zhou, Peng, Zhang, David Wei
Published in Advanced science (01.04.2020)
Published in Advanced science (01.04.2020)
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Physics inspired compact modelling of \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\hbox {BiFeO}_3$$\end{document}BiFeO3 based memristors
Yarragolla, Sahitya, Du, Nan, Hemke, Torben, Zhao, Xianyue, Chen, Ziang, Polian, Ilia, Mussenbrock, Thomas
Published in Scientific reports (28.11.2022)
Published in Scientific reports (28.11.2022)
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Physics inspired compact modelling of [Formula: see text] based memristors
Yarragolla, Sahitya, Du, Nan, Hemke, Torben, Zhao, Xianyue, Chen, Ziang, Polian, Ilia, Mussenbrock, Thomas
Published in Scientific reports (28.11.2022)
Published in Scientific reports (28.11.2022)
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Physics inspired compact modelling of $$\hbox {BiFeO}_3$$ BiFeO 3 based memristors
Sahitya Yarragolla, Nan Du, Torben Hemke, Xianyue Zhao, Ziang Chen, Ilia Polian, Thomas Mussenbrock
Published in Scientific reports (01.11.2022)
Published in Scientific reports (01.11.2022)
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