检出限
材料科学
纳米技术
介孔材料
介孔二氧化硅
图层(电子)
表面改性
分子
化学工程
化学
色谱法
有机化学
工程类
催化作用
作者
Hui Zeng,Shan Zhou,Lei Xie,Qirui Liang,Xin Zhang,Miao Yan,Yanan Huang,Tianyi Liu,Pu Chen,Lei Zhang,Kang Liang,Lei Jiang,Biao Kong
标识
DOI:10.1016/j.bios.2022.114985
摘要
Bioinspired artificial nanochannels have emerged as promising candidates for developing smart nanofluidic sensors due to their highly controllable size and surface functionality. However, little attention has been paid to the role of the outer surface of the nanochannels in enhancing the detection sensitivity. Herein, an asymmetric nanochannel-based responsive detection platform with ultrathin tannic acid modified mesoporous silica (TA-MS) layer and alumina oxide (AAO) thin film is prepared through super-assembly strategy. The functional TA-MS outer surface layer provides abundant phenolic groups on the nanochannels for ions and molecules transport, which paves the way for the development of heterochannels for label-free, reversible and highly sensitive dopamine (DA) detection based off of cation displacement effect. Notably, by engineering optimal thickness of the TA-MS, the sensing performance can be further improved. After optimization, the linear response ranges for DA detection are 0.001–1 μM, 1–10 μM and 10–200 μM with the detection limit of 0.1 nM. The prepared sensor exhibits stable reversibility after several detection cycles. In addition, this method was successfully applied for DA detection in fetal bovine serum sample. Theoretical calculations further prove the detection mechanism. This work opens a new horizon of using mesoporous materials to construct nanofluidic sensors for ultrasensitive small molecule detection and recognition.
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