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A facile way to construct sensor array library via supramolecular chemistry for discriminating complex systems.


ABSTRACT: Differential sensing, which discriminates analytes via pattern recognition by sensor arrays, plays an important role in our understanding of many chemical and biological systems. However, it remains challenging to develop new methods to build a sensor unit library without incurring a high workload of synthesis. Herein, we propose a supramolecular approach to construct a sensor unit library by taking full advantage of recognition and assembly. Ten sensor arrays are developed by replacing the building block combinations, adjusting the ratio between system components, and changing the environment. Using proteins as model analytes, we examine the discriminative abilities of these supramolecular sensor arrays. Then the practical applicability for discriminating complex analytes is further demonstrated using honey as an example. This sensor array construction strategy is simple, tunable, and capable of developing many sensor units with as few syntheses as possible.

SUBMITTER: Tian JH 

PROVIDER: S-EPMC9314354 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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A facile way to construct sensor array library via supramolecular chemistry for discriminating complex systems.

Tian Jia-Hong JH   Hu Xin-Yue XY   Hu Zong-Ying ZY   Tian Han-Wen HW   Li Juan-Juan JJ   Pan Yu-Chen YC   Li Hua-Bin HB   Guo Dong-Sheng DS  

Nature communications 20220725 1


Differential sensing, which discriminates analytes via pattern recognition by sensor arrays, plays an important role in our understanding of many chemical and biological systems. However, it remains challenging to develop new methods to build a sensor unit library without incurring a high workload of synthesis. Herein, we propose a supramolecular approach to construct a sensor unit library by taking full advantage of recognition and assembly. Ten sensor arrays are developed by replacing the buil  ...[more]

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