稳健性(进化)
灵活性(工程)
计算机科学
莫尔斯电码
材料科学
解码方法
人工神经网络
人工智能
纳米技术
光子学
水下
荧光
编码(集合论)
机器视觉
发光
嵌入式系统
通信系统
自愈水凝胶
氧化物
电信网络
作者
Yanqi Yin,Tianxiang Gao,Bingchen Zhou,Yan Yu,Xinrui Jia,He Ding,Shili Gai,Piaoping Yang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-11-04
卷期号:25 (46): 16522-16531
被引量:4
标识
DOI:10.1021/acs.nanolett.5c04651
摘要
Underwater intelligent systems demand flexible materials with robustness, environmental tolerance, and functional integration. Hydrogels, which combine flexibility with conductivity, show promise but often fail under harsh conditions. Herein, an antifreezing, antiswelling hydrogel with core–shell architecture was fabricated by ion concentration gradient modulation. Polyacrylamide/poly(acrylic acid) pregel immersed in Al3+ solution produced a concentration gradient. The external layer generates a dense metal oxide film, acting as a robust protective armor, while the inner polymer network preserves elasticity. A dynamic cross-linking network endowed the hydrogel with mechanical robustness (561% strain) and fracture strength (0.188 MPa stress), superior frost resistance (−48 °C), and a swift response time (198 ms). Machine learning-enabled Morse code decoding established a nonverbal underwater communication system, enabling remote human–machine interaction and efficient robotic control. The proposed hydrogel-based system achieves integrated “sensing-control-communication” in extreme environments, offering innovative strategies for continuous digital motion monitoring and human–machine interaction.
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