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SupraRNA: A Comprehensive Supramolecular Approach for an RNA vaccine for Influenza A (H1N1)
O'Reilly, Rachel
(Principal Investigator)
Chemistry
Overview
Fingerprint
Research output
(1)
Project Details
Short title
SupraRNA: A Comprehensive Supramolecular Approach for an RNA vaccine for Influenza A (H1N1)
Status
Finished
Effective start/end date
1/05/20
→
30/06/22
Funding
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.
Amphiphiles
Engineering & Materials Science
100%
Functional groups
Engineering & Materials Science
69%
Nanostructures
Engineering & Materials Science
64%
Nanoparticles
Engineering & Materials Science
52%
Antibacterial
Chemistry
43%
Amphophile
Chemistry
41%
Cationic Group
Chemistry
36%
Shape
Chemistry
34%
Research output
Research output per year
2022
2022
2022
1
Article
Research output per year
Research output per year
Elucidating the role of multivalency, shape, size and functional group density on antibacterial activity of diversified supramolecular nanostructures enabled by templated assembly
Sikder, A.
,
Pearce, A. K.
,
Kumar, S. C. M.
&
O'Reilly, R.
,
24 Oct 2022
, (E-pub ahead of print)
In:
Materials Horizons.
10
,
1
,
p. 171-178
Research output
:
Contribution to journal
›
Article
›
peer-review
Open Access
File
Amphiphiles
100%
Functional groups
69%
Nanostructures
64%
Nanoparticles
52%
Antibacterial
43%
1
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