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Molecular recognition using corona phase complexes made of synthetic polymers adsorbed on carbon nanotubes

Title
Molecular recognition using corona phase complexes made of synthetic polymers adsorbed on carbon nanotubes
Author
김종호
Keywords
FUNCTIONALIZATION; BAND-GAP FLUORESCENCE; RIBOFLAVIN CARRIER PROTEIN; SINGLE; ANTIBODY-BASED SENSORS; SPECIFICITY; OPTICAL SENSORS; SURFACTANTS; MICROARRAYS; SIMULATION
Issue Date
2013-12
Publisher
Nature Publishing Group
Citation
Nature Nanotechnology, v. 8, NO. 12, Page. 959-968
Abstract
Understanding molecular recognition is of fundamental importance in applications such as therapeutics, chemical catalysis and sensor design. The most common recognition motifs involve biological macromolecules such as antibodies and aptamers. The key to biorecognition consists of a unique three-dimensional structure formed by a folded and constrained bioheteropolymer that creates a binding pocket, or an interface, able to recognize a specific molecule. Here, we show that synthetic heteropolymers, once constrained onto a single-walled carbon nanotube by chemical adsorption, also form a new corona phase that exhibits highly selective recognition for specific molecules. To prove the generality of this phenomenon, we report three examples of heteropolymer-nanotube recognition complexes for riboflavin, L-thyroxine and oestradiol. In each case, the recognition was predicted using a two-dimensional thermodynamic model of surface interactions in which the dissociation constants can be tuned by perturbing the chemical structure of the heteropolymer. Moreover, these complexes can be used as new types of spatiotemporal sensors based on modulation of the carbon nanotube photoemission in the near-infrared, as we show by tracking riboflavin diffusion in murine macrophages.
URI
https://www.nature.com/articles/nnano.2013.236https://repository.hanyang.ac.kr/handle/20.500.11754/175978
ISSN
1748-3387;1748-3395
DOI
10.1038/NNANO.2013.236
Appears in Collections:
COLLEGE OF ENGINEERING SCIENCES[E](공학대학) > MATERIALS SCIENCE AND CHEMICAL ENGINEERING(재료화학공학과) > Articles
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