articleTop 1% cited
Exploring the sequence space for (tri-)peptide self-assembly to design and discover new hydrogels
Nature Chemistry · 2014 · Vol. 7(1) · pp. 30–37
Pim W. J. M. Frederix(University of Strathclyde)Gary G. Scott(University of Strathclyde)Yousef M. Abul‐Haija(University of Strathclyde)Daniela Kalafatović(University of Strathclyde)Charalampos G. Pappas(University of Strathclyde)Nadeem Javid(University of Strathclyde)Neil T. Hunt(University of Strathclyde)Rein V. Ulijn✉(Hunter College)Tell Tuttle(University of Strathclyde)
Supramolecular Self-Assembly in MaterialsChemical Synthesis and AnalysisPolydiacetylene-based materials and applicationsTripeptideSequence (biology)Sequence spacePeptideSelf-healing hydrogelsSupramolecular chemistryChemistryNanotechnologySelf-assemblyPeptide sequence
MeSH terms
Amino Acid SequenceHydrogen BondingHydrogen-Ion ConcentrationOligopeptidesProtein Structure, SecondaryHydrogelsNanostructuresMolecular Dynamics Simulation
Funding
- University of Strathclyde
- Engineering and Physical Sciences Research Council
Citations
764
FWCI
26.16
field-weighted impact
References
54
Percentile
100%
vs. same field & year
Citations per year
References
The MARTINI Coarse-Grained Force Field: Extension to Proteins
Journal of Chemical Theory and Computation · 2008 · 2,552 citations
Polarizable Water Model for the Coarse-Grained MARTINI Force Field
PLoS Computational Biology · 2010 · 897 citations
Improved Parameters for the Martini Coarse-Grained Protein Force Field
Journal of Chemical Theory and Computation · 2012 · 1,587 citations
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