模块化设计
电子设备和系统的热管理
可穿戴计算机
电磁屏蔽
电磁干扰
适应性
电磁干扰
可扩展性
解耦(概率)
可穿戴技术
计算机科学
干扰(通信)
电子工程
热的
数码产品
嵌入式系统
灵活性(工程)
工程类
控制工程
系统工程
微波食品加热
电气工程
航空航天
电磁环境
电磁兼容性
作者
Qi-Fan Xuan,Pei‐Yan Zhao,Hualong Peng,Shan Zhang,Bo Cai,Fang-Yu Niu,Martin C. Koo,Xiao-Bo Sun,Xingwei Jiang,Guang-Sheng Wang
标识
DOI:10.1007/s40820-026-02140-9
摘要
Abstract Integrated wearable thermal management technologies have greatly enhanced human adaptability to complex environments. However, conventional thermal management strategies, which lack environmental risk perception and stable human–machine interaction, are increasingly inadequate for ensuring personal health. Here, we introduce a hierarchical modular design strategy to develop a wearable intelligent thermal management film with robust electromagnetic interference (EMI) shielding capabilities. A sensitive biomimetic serpentine dual-mode temperature–humidity sensing module is coupled with a low-power electro-/photothermal conversion module to enable intelligent thermal regulation. The resulting thermal management system offers stable and sensitive front-end temperature–humidity monitoring, alongside low-power electrothermal (51.79 °C at 1.5 V) and photothermal (56.38 °C at 45.51 mW cm −2 ) temperature regulation capabilities. Additionally, the system exhibits outstanding EMI shielding performance, with an EMI SE/t value of 1600 dB mm –1 at a thickness of just 35 μm, ensuring stable signal transmission. The hierarchical modular design enables functional allocation with higher, thereby optimizing material performance while enhancing the decoupling and synergistic effects between different functionalities. These findings provide a scalable and practical pathway for the multifunctional integration and performance optimization of next-generation flexible wearable electronic composites.
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