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摩擦电序列中增强的正电荷性能:用于基于机器学习的可穿戴传感器的共轭介孔纤维的分子工程

Enhanced Positive Charge Performance in Triboelectric Series: Molecular Engineering of Conjugated Mesoporous Fibers for Machine Learning-Based Wearable Sensors.

作者信息

Sun Jingzhe, Jeong Songah, Zheng Zihao, Ren Bingqi, Han Seunghye, Li Yongwei, Bae Jihyun, Xiang Yong, Kim Hyungwoo, Park Jong-Jin

机构信息

Human-Tech Convergence Program, Department of Clothing & Textiles, Hanyang University, Seoul, 04763, Republic of Korea.

Department of Polymer Science and Engineering, Chonnam National University, Gwangju, 61186, Republic of Korea.

出版信息

Small. 2025 Jan;21(3):e2404737. doi: 10.1002/smll.202404737. Epub 2024 Aug 29.

DOI:10.1002/smll.202404737
PMID:39210644
Abstract

With the increasing focus on triboelectric-based sensors, research on synthesizing dielectric layers from specific substances is gradually emerging. Despite numerous negatively-charged triboelectric materials, there is a scarcity of synthesizable positively-charged materials, creating a research gap. This study demonstrates the molecular design of a conjugated, mesoporous, self-assembled sheet via bottom-up synthesis. The synthesized sheet is functionalized to create a triboelectric nanogenerator. Its large specific surface area, softness, and internal space increase the actual contact area and provide adsorption sites for polypyrrole nanoparticles. The incorporation of -COO functional group enhances positive triboelectric performance, forming a dielectric layer with charge-trapping capabilities. When contact with polytetrafluoroethylene (PTFE), this structure boosts the output voltage, showing significant amplification after charge injection with minimal decay. As a demonstration, the bilayer structure is applied as a touchpad on the experimenter's arm to write symbols. The signals are input into an innovative machine-learning model to interpret the writer's intent. Additionally, the device connects to a terminal for real-time medical services, suggesting practical applications for wearable triboelectric sensors with artificial intelligence.

摘要

随着对基于摩擦电的传感器的关注度不断提高,从特定物质合成介电层的研究逐渐兴起。尽管有许多带负电荷的摩擦电材料,但可合成的带正电荷的材料却很稀缺,这就形成了一个研究空白。本研究通过自下而上的合成方法展示了一种共轭、介孔、自组装片材的分子设计。合成的片材经过功能化处理以制造摩擦纳米发电机。其大的比表面积、柔软性和内部空间增加了实际接触面积,并为聚吡咯纳米颗粒提供了吸附位点。-COO官能团的引入增强了正摩擦电性能,形成了具有电荷俘获能力的介电层。当与聚四氟乙烯(PTFE)接触时,这种结构提高了输出电压,在电荷注入后显示出显著的放大且衰减最小。作为一个演示,双层结构被用作实验者手臂上的触摸板来书写符号。信号被输入到一个创新的机器学习模型中以解读书写者的意图。此外,该设备连接到一个用于实时医疗服务的终端,这表明具有人工智能的可穿戴摩擦电传感器具有实际应用价值。

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