Stretchable Polymorphic Electrochromic Textile Electronics for Deep Learning‐Assisted Self‐Adaptive Camouflage

伪装 数码产品 可伸缩电子设备 电致变色 材料科学 导电体 纳米技术 织物 弹性体 柔性电子器件 可穿戴技术 仿生学 机制(生物学) 可穿戴计算机 电致变色装置 电池(电) 计算机科学 智能材料 机械工程
作者
Xingchi Wang,Xiaodong Guo,Y. F. Wang,Kaihua Hu,Junyi Cai,Mei Wang,Jinhua Jiang,Ying Ma,Jianyong Yu
出处
期刊:Small [Wiley]
卷期号:21 (49): e10137-e10137 被引量:3
标识
DOI:10.1002/smll.202510137
摘要

Electrochromic (EC) textile electronics, characterized by their seamless system integration, advanced intelligence, and intrinsic wearability, are promising to become the second skin of human beings for conformal real-time display, imaging, sensing, communicating, and human-machine interaction. However, it remains a huge challenge to simultaneously achieve EC textile electronics with admirable color-changing performance, reliable mechanical properties, remarkable environmental stability, and precise hierarchical control. Herein, a stretchable all-solid-state polymorphic EC textile electronics system, featuring fast response (≈3 s), high color contrast (≈58.1%), long-term operation (>12 000 s), and excellent coloration stability under large deformation and freezing is developed based on liquid-free poly(urethane-urea) elastomeric ionic conductors and is used to implement deep learning-assisted self-adaptive camouflage on human bodies in response to dynamic environments. This excellent performance is derived from the elastomeric ionic conductors designed with a supramolecular-covalent dual cross-linking network, which possess high ionic conductivity, superb stretchability, tissue-level softness, robust adhesion, self-healing property, and wide temperature adaptability. Moreover, a lightweight deep learning model, MobileNetV2 is developed to process environmental information, establish the coloration strategy and trigger mechanism for camouflage assignments. This work presents a biomimetic self-adaptive camouflage system using a smart glove as an example implementation, promoting a paradigm shift in next-generation wearable electronics.
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