镜像
热感受器
计算机科学
纳米技术
生物系统
离子键合
材料科学
工作(物理)
仿生学
热的
生命系统
热能
人工智能
合理设计
热传导
仿生材料
合成生物学
生化工程
作者
Fan Li,Hua Xue,Xiuzhu Lin,Juan Wang,Juan Li,Hongran Zhao,Tong Zhang
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-11-07
卷期号:11 (45): eady2547-eady2547
标识
DOI:10.1126/sciadv.ady2547
摘要
Biological thermoreception extends beyond mere temperature detection, capturing nuanced cues such as sunlight, wind chill, humidity, and object contact. However, artificial thermoreceptors rarely match the acuity and perceptual richness with their biological counterpart, leaving a critical gap in thermosensory functionality for human-machine integration. Here, we introduce a structurally programmed iontronic platform that leverages energy landscape engineering in a heterogeneous polymer electrolyte to establish a continuous distribution of potential wells hosting a continuum of ionic carrier states. This architecture enables semiconductor-like thermally activated conduction by ionic carriers, achieving detection of temperature variations as small as 8 mK. Building on this platform, we develop a biomimetic ionic skin that interprets airflow, humidity, solar irradiation, thermal conductivity variations, and evaporative cooling through thermal cues, mirroring the multifaceted thermoreception of biological skin. This work complements the existing research paradigm of iontronics by integrating solid-state physics principles. The artificial thermoreceptor thus narrows the gap between artificial and biological thermosensation, advancing human-machine integration and biohybrid systems.
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