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Chemical Sensors using Single-Molecule Electrical Measurements

期刊

CHEMISTRY-AN ASIAN JOURNAL
卷 -, 期 -, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/asia.202300181

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Single-molecule electrical measurement; Chemical sensors; Intramolecular interaction; sensitivity

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Driven by the digitization and informatization of contemporary society, electrical sensors are developing toward minimal structure, intelligent function, and high detection resolution. Single-molecule electrical measurement techniques have been proven to be capable of label-free molecular recognition and detection, which opens a new strategy for the design of efficient single-molecule detection sensors. This review outlines the main advances and potentials of single-molecule electronics for qualitative identification and recognition assays at the single-molecule level, with a focus on the detection of ions, small molecules, oligomers, genetic materials, and proteins. It also summarizes the remaining challenges in the current development of single-molecule electrical sensing and presents some potential perspectives for this field.
Driven by the digitization and informatization of contemporary society, electrical sensors are developing toward minimal structure, intelligent function, and high detection resolution. Single-molecule electrical measurement techniques have been proven to be capable of label-free molecular recognition and detection, which opens a new strategy for the design of efficient single-molecule detection sensors. In this review, we outline the main advances and potentials of single-molecule electronics for qualitative identification and recognition assays at the single-molecule level. Strategies for single-molecule electro-sensing and its main applications are reviewed, mainly in the detection of ions, small molecules, oligomers, genetic materials, and proteins. This review summarizes the remaining challenges in the current development of single-molecule electrical sensing and presents some potential perspectives for this field.

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