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Ultrasensitive microchip based on smart microgel for real-time online detection of trace threat analytes.


ABSTRACT: Real-time online detection of trace threat analytes is critical for global sustainability, whereas the key challenge is how to efficiently convert and amplify analyte signals into simple readouts. Here we report an ultrasensitive microfluidic platform incorporated with smart microgel for real-time online detection of trace threat analytes. The microgel can swell responding to specific stimulus in flowing solution, resulting in efficient conversion of the stimulus signal into significantly amplified signal of flow-rate change; thus highly sensitive, fast, and selective detection can be achieved. We demonstrate this by incorporating ion-recognizable microgel for detecting trace Pb(2+), and connecting our platform with pipelines of tap water and wastewater for real-time online Pb(2+) detection to achieve timely pollution warning and terminating. This work provides a generalizable platform for incorporating myriad stimuli-responsive microgels to achieve ever-better performance for real-time online detection of various trace threat molecules, and may expand the scope of applications of detection techniques.

SUBMITTER: Lin S 

PROVIDER: S-EPMC4776518 | biostudies-other | 2016 Feb

REPOSITORIES: biostudies-other

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Ultrasensitive microchip based on smart microgel for real-time online detection of trace threat analytes.

Lin Shuo S   Wang Wei W   Ju Xiao-Jie XJ   Xie Rui R   Liu Zhuang Z   Yu Hai-Rong HR   Zhang Chuan C   Chu Liang-Yin LY  

Proceedings of the National Academy of Sciences of the United States of America 20160208 8


Real-time online detection of trace threat analytes is critical for global sustainability, whereas the key challenge is how to efficiently convert and amplify analyte signals into simple readouts. Here we report an ultrasensitive microfluidic platform incorporated with smart microgel for real-time online detection of trace threat analytes. The microgel can swell responding to specific stimulus in flowing solution, resulting in efficient conversion of the stimulus signal into significantly amplif  ...[more]

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