School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Department of Micro/Nano Electronics, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Mater Horiz. 2024 Aug 28;11(17):4075-4085. doi: 10.1039/d3mh01950k.
Affective computing, representing the forefront of human-machine interaction, is confronted with the pressing challenges of the execution speed and power consumption brought by the transmission of massive data. Herein, we introduce a bionic organic memristor inspired by the ligand-gated ion channels (LGICs) to facilitate near-sensor affective computing based on electroencephalography (EEG). It is constructed from a coordination polymer comprising Co ions and benzothiadiazole (Co-BTA), featuring multiple switching sites for redox reactions. Through advanced characterizations and theoretical calculations, we demonstrate that when subjected to a bias voltage, only the site where Co ions bind with N atoms from four BTA molecules becomes activated, while others remain inert. This remarkable phenomenon resembles the selective activation of LGICs on the postsynaptic membrane for neural signal regulation. Consequently, the bionic organic memristor network exhibits outstanding reliability (200 000 cycles), exceptional integration level (2 pixels), ultra-low energy consumption (4.05 pJ), and fast switching speed (94 ns). Moreover, the built near-sensor system based on it achieves emotion recognition with an accuracy exceeding 95%. This research substantively adds to the ambition of realizing empathetic interaction and presents an appealing bionic approach for the development of novel electronic devices.
情感计算代表着人机交互的最前沿,但其面临着由海量数据传输带来的执行速度和功耗方面的巨大挑战。在这里,我们介绍了一种受配体门控离子通道 (LGICs) 启发的仿生有机忆阻器,旨在促进基于脑电图 (EEG) 的近传感器情感计算。它由包含 Co 离子和苯并噻二唑 (Co-BTA) 的配位聚合物构成,具有多个用于氧化还原反应的切换位点。通过先进的表征和理论计算,我们证明了当施加偏置电压时,只有 Co 离子与来自四个 BTA 分子的 N 原子结合的位点被激活,而其他位点保持惰性。这种显著的现象类似于 LGIC 在突触后膜上对神经信号调节的选择性激活。因此,仿生有机忆阻器网络表现出出色的可靠性(200000 次循环)、卓越的集成度(2 个像素)、超低的能耗(4.05 pJ)和快速的开关速度(94 ns)。此外,基于它构建的近传感器系统实现了超过 95%的情感识别准确率。这项研究为实现同理心交互的雄心壮志提供了实质性的支持,并为新型电子设备的发展提供了一种有吸引力的仿生方法。