材料科学
碳纳米管
纳米技术
范德瓦尔斯力
堆积
色散(光学)
可穿戴计算机
消防
跟踪(教育)
超短脉冲
信号(编程语言)
纳米复合材料
聚合物
可穿戴技术
健康危害
导电聚合物
碳纤维
复合数
危害
化学电阻器
聚苯胺
领域(数学)
持续监测
化学工程
电化学
微流控
危害分析
生命体征
纳米材料
结构健康监测
兴奋剂
作者
Mengran Chen,Heng Liu,Xuefei Zhang,Shun Wan,Zhe Tang,Dapeng Xie,Zheng Liu,Hongqing Zhou,Peng‐an Zong
标识
DOI:10.1002/adfm.202522905
摘要
ABSTRACT Next‐generation rescue technologies demand flexible, self‐powered sensors capable of simultaneously monitoring multiple hazards and vital signs in demanding field conditions. This study pioneers interfacial molecular ordering in polyaniline/multi‐walled carbon nanotube (PANI/MWCNT) composites via pulsed electrochemical polymerization, overcoming the limited interfacial control and random polymer dispersion of conventional PANI/CNT systems. By templating PANI growth on MWCNT bundles, we engineer a hierarchical “crystalline–quasi‐crystalline–amorphous” structure, where a ∼2 nm quasi‐crystalline PANI interlayer—stabilized by π–π stacking and van der Waals forces—enables directional carrier transport (carrier mobility increased by 133%, power factor sextupled). This atomic‐level ordering unlocks unprecedented multi‐mode sensing capabilities: (1) hazard monitoring with Nernstian pH response (59.35 mV pH −1 ) and ultrafast NH 3 detection (0.81 s @ 5 ppm), based on reversible doping and depletion‐layer modulation; (2) biophysical tracking via Seebeck‐driven temperature/respiration sensing and pressure‐responsive joint/facial/vocal monitoring. Integrated into wearable firefighting gear, the composite simultaneously maps chemical threats, ambient temperature, and vital signs for triggering an alert. This interfacial engineering strategy redefines multifunctional sensing platforms for extreme‐environment rescue operations.
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