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Nanoscale biomolecular structures on self-assembled monolayers generated from modular pegylated disulfides.

Wong, Lu Shin; Janusz, Stefan J; Sun, Shuqing; Leggett, Graham J; Micklefield, Jason

Chemistry - A Europen Journal. 2010;16(40):12234-12243.

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Abstract

A solid-phase synthetic strategy was developed that uses modular building blocks to prepare symmetric oligo(ethylene glycol)-terminated disulfides with a variety of lengths and terminal functionalities. The modular disulfides, composed of alkyl amino groups linked by an amide group to oligoethylene chains were used to generate self-assembled monolayers (SAMs), which were characterised to determine their applicability for biomolecular applications. X-ray photoelectron spectroscopy (XPS) of the SAMs obtained from these molecules demonstrated improved stability towards displacement by 16-hexadecanethiol, while surface plasmon resonance (SPR) analyses of SAMs prepared with the hydroxy-terminated oligoethylene disulfide showed equal resistance to non-specific protein adsorption in comparison to 11-mercaptoundecyl tri(ethylene glycol). SAMs made from these adsorbates were amenable to nanoscale patterning by scanning near-field photolithography (SNP), facilitating the fabrication of nanopatterned, protein-functionalised surfaces. Such SAMs may be further developed for bionanotechnology applications such as the fabrication of nanoscale biological arrays and sensor devices.

Bibliographic metadata

Type of resource:
Content type:
Publication type:
Publication form:
Published date:
Abbreviated journal title:
ISSN:
Place of publication:
Germany
Volume:
16
Issue:
40
Start page:
12234
End page:
12243
Pagination:
12234-43
Digital Object Identifier:
10.1002/chem.200902439
Pubmed Identifier:
20839371
Access state:
Active

Institutional metadata

University researcher(s):

Record metadata

Manchester eScholar ID:
uk-ac-man-scw:100522
Created by:
Micklefield, Jason
Created:
17th December, 2010, 09:34:32
Last modified by:
Micklefield, Jason
Last modified:
17th December, 2010, 09:41:35

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