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FP7_COLLAB_HYSENS: Hybrid Molecule-Nanocrystal Assemblies for Photonic and Electronic Sensing Applications
Preece, Jon
(Principal Investigator)
Mendes, Paula
(Co-Investigator)
Chemistry
Chemical Engineering
Overview
Fingerprint
Research output
(1)
Project Details
Short title
FP7_COLLAB_HYSENS: Hybrid Molecule-Nanocrystal Assemblies for Photonic and Electronic Sensing Applications
Status
Finished
Effective start/end date
1/04/11
→
31/03/14
Funding
European Commission - Management Costs
European Commission
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Fingerprint
Explore the research topics touched on by this project. These labels are generated based on the underlying awards/grants. Together they form a unique fingerprint.
Oligopeptides
Engineering & Materials Science
100%
Modulation
Engineering & Materials Science
40%
Ligands
Engineering & Materials Science
29%
Biotin
Engineering & Materials Science
26%
Conformations
Engineering & Materials Science
18%
Proteins
Engineering & Materials Science
13%
Self assembled monolayers
Engineering & Materials Science
11%
Medical applications
Engineering & Materials Science
8%
Research output
Research output per year
2014
2014
2014
1
Article
Research output per year
Research output per year
Modulation of biointeractions by electrically switchable oligopeptide surfaces : structural requirements and mechanism
Yeung, C-L.
,
Wang, X.
,
Lashkor, M.
,
Cantini, E.
,
Rawson, F. J.
,
Iqbal, P.
,
Preece, J. A.
,
Ma, J.
&
Mendes, P. M.
,
Apr 2014
,
In:
Advanced Materials Interfaces.
1
,
2
, 1300085.
Research output
:
Contribution to journal
›
Article
›
peer-review
Open Access
File
Oligopeptides
100%
Modulation
40%
Ligands
29%
Biotin
26%
Conformations
18%
15
Citations (Scopus)
210
Downloads (Pure)