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Biomimetic phospholipid membrane organization on graphene and graphene oxide surfaces: A molecular dynamics simulation study

Abstract:

Supported phospholipid membrane patches stabilized on graphene surfaces have shown potential in sensor device functionalization, including biosensors and biocatalysis. Lipid dip-pen nanolithography (L-DPN) is a method useful in generating supported membrane structures that maintain lipid functionality, such as exhibiting specific interactions with protein molecules. Here, we have integrated L-DPN, atomic force microscopy, and coarse-grained molecular dynamics simulation methods to characteriz...

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Publication status:
Published
Peer review status:
Peer reviewed
Version:
Publisher's version

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Publisher copy:
10.1021/acsnano.6b07352

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Department:
Oxford, MSD, Biochemistry
Role:
Author
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Karlsruhe Institute of Technology More from this funder
Publisher:
American Chemical Society Publisher's website
Journal:
ACS Nano Journal website
Volume:
11
Issue:
2
Pages:
1613–1625
Publication date:
2017-02-06
Acceptance date:
2017-02-06
DOI:
Pubs id:
pubs:675929
URN:
uri:9d4cd398-37dc-4720-ba88-3e1cfa751b30
UUID:
uuid:9d4cd398-37dc-4720-ba88-3e1cfa751b30
Local pid:
pubs:675929

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