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  5. Specific detection of biomolecules in physiological solutions using graphene transistor biosensors

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Article
English
2016

Specific detection of biomolecules in physiological solutions using graphene transistor biosensors

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English
2016
Proceedings of the National Academy of Sciences
Vol 113 (51)
DOI: 10.1073/pnas.1625010114

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Charles M. Lieber
Charles M. Lieber

Harvard University

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Ning Gao
Teng Gao
Xiao Yang
+4 more

Abstract

Significance Nanoelectronic transistor sensors based on synthesized one- and two-dimensional nanomaterials have achieved real-time label-free detection of a wide range of biological species with high sensitivity, although direct analysis of biological samples has been limited due to Debye charge screening in physiological solutions. This paper describes a general strategy overcoming this challenge involving comodification of the transistor sensor surface with a polymer and receptor, where the polymer forms a permeable layer that increases the effective screening length and receptor enables selective detection of analytes. The capability of this strategy was demonstrated with selective detection of cancer markers in physiological solution, thus opening substantial opportunities for real-time sensing applications in biology and medicine.

How to cite this publication

Ning Gao, Teng Gao, Xiao Yang, Xiaochuan Dai, Wei Zhou, Anqi Zhang, Charles M. Lieber (2016). Specific detection of biomolecules in physiological solutions using graphene transistor biosensors. Proceedings of the National Academy of Sciences, 113(51), pp. 14633-14638, DOI: 10.1073/pnas.1625010114.

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Publication Details

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Article

Year

2016

Authors

7

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0

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0

Language

English

Journal

Proceedings of the National Academy of Sciences

DOI

10.1073/pnas.1625010114

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