Self-assembling peptides bearing organic electronic functionality and applications employing the same
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United States of America Patent
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May 10, 2016
Grant Date -
Apr 26, 2012
app pub date -
Apr 2, 2010
filing date -
Apr 2, 2009
priority date (Note) -
In Force
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Abstract
The aqueous self-assembly of oligopeptide-flanked π-conjugated molecules into discrete one-dimensional nanostructures is described. Unique to these molecules is the fact that the π-conjugated unit has been directly embedded within the peptide backbone by way of a synthetic amino acid with π-functionality that is compatible with standard Fmoc-based peptide synthesis or by way of a diacid or other bis(electrophile) that can covalently cross-link peptide chains presented on a synthesis support. The peptide-based molecular designs enforce intimate π-π communication within the aggregates after charge-screening and self-assembly, making these nanostructures attractive for optical or electronic applications in biological environments. In other embodiments, a convenient method to incorporate π-electron units into peptides that assemble into amyloid-like supramolecular polymers is disclosed. Self-assembly manipulates these “electronic peptides” into delocalized sub-10 nm one dimensional (1-D) nanostructures under completely aqueous conditions.

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Patent Owner(s)
Patent Owner | Address | |
---|---|---|
THE JOHNS HOPKINS UNIVERSITY | 3400 N CHARLES STREET BALTIMORE MD 21218 |
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- [Patents Count]
Inventor(s)
Inventor Name | Address | # of filed Patents | Total Citations |
---|---|---|---|
Diegelmann, Stephen Robert | Baltimore, US | 2 | 9 |
Tovar, John Dayton | Baltimore, US | 3 | 7 |
Vadehra, Geeta Sophie | Los Angeles, US | 1 | 6 |
Wall, Brian D | Baltimore, US | 1 | 6 |
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