转化式学习
材料科学
嵌入
纳米技术
制作
计算机科学
波导管
趋同(经济学)
透视图(图形)
图表
自然(考古学)
计算
光子学
光学现象
系统工程
人机交互
仿生学
光学计算
智能决策支持系统
作者
Jinfeng Zhang,Puxiang Lai,Baojun Li,Xianguang Yang
标识
DOI:10.1002/adom.202503863
摘要
ABSTRACT Fiber‐optic waveguides (FOWGs) are undergoing a transformative leap beyond their traditional role as passive light‐transmission channels. This evolution is fueled by the integration of novel functional materials—such as stimuli‐responsive hydrogels, aggregation‐induced emission (AIE) luminogens, and natural biomaterials—coupled with advanced fabrication techniques. These innovations enable a “material‐as‐function” paradigm, embedding capabilities like sensing, actuation, and computation directly into the waveguide structure. This Perspective explores how these intelligent FOWG‐based platforms are unlocking emerging applications in real‐time environmental and biomedical sensing, minimally invasive photomedicine, and intuitive human‐machine interfaces for robotics. Looking forward, we chart a developmental trajectory from materials to devices and systems, emphasizing the pivotal role of artificial intelligence in orchestrating this multifunctional integration. The convergence of material science, photonics, and AI is poised to transition FOWGs from simple optical pipes into adaptive, intelligent platforms that will underpin next‐generation healthcare, environmental monitoring, and interactive technologies.
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