罗丹明6G
生物分子
材料科学
纳米技术
基质(水族馆)
毛细管作用
检出限
纳米颗粒
生物传感器
跟踪(心理语言学)
可重用性
纳米尺度
微流控
信号(编程语言)
毛细管电泳
实验室晶片
作者
Enze Lv,Tao Wang,Ruijing Sun,Jinwei Zeng,Weidong Zhao,Yi-Xiang Wang
出处
期刊:Small
[Wiley]
日期:2026-06-22
卷期号:: e74078-e74078
摘要
ABSTRACT To address bottlenecks in biomolecular trace detection, such as cumbersome sample processing and insufficient dynamic detection capabilities, we propose and construct an Ag–Au Bee‐Hive Cavity (BHC) array SERS substrate based on the Bee‐Hive bionic synergy concept. This design integrates the stability of solid substrates with the high adaptability of nanoparticles (NPs). The Ag–Au BHC array provides a stable, ordered “hot spots” framework, while Au NPs serve as “enhancement units”, establishing a dynamically coupled “NPs‐BHC” system. The substrate is capable of detecting Rhodamine 6G (R6G) at concentrations as low as 10 −14 M. When synergized with Au NPs, the detection limit further improves to 10 − 16 M, demonstrating extremely high detection sensitivity. The substrate maintains excellent signal stability and interference resistance when tilted and bent conditions. To enable rapid in situ detection, the SERS substrate was integrated with capillary glass tubing to create an integrated detection device. Capillary action facilitated rapid, power‐free sampling, enabling continuous dynamic monitoring of multiple target molecules at flow rates up to 1 mL/s. This work not only provides a novel strategy for developing high‐performance, integrated bionic SERS sensing platforms but also offers an effective solution for the rapid, in situ, and dynamic detection of trace biomolecules in complex environments.
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