Publications
Found 78 results
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“Layer-by-layer polyelectrolyte deposition: a mechanism for forming biocomposite materials.”, Biomacromolecules, vol. 14, no. 6, pp. 1715-26, 2013.
, “Marine hydroid perisarc: a chitin- and melanin-reinforced composite with DOPA-iron(III) complexes.”, Acta Biomater, vol. 9, no. 9, pp. 8110-7, 2013.
, “Versatile tuning of supramolecular hydrogels through metal complexation of oxidation-resistant catechol-inspired ligands.”, Soft Matter, vol. 9, no. 43, 2013.
, “Boronate complex formation with Dopa containing mussel adhesive protein retards ph-induced oxidation and enables adhesion to mica.”, PLoS One, vol. 9, no. 10, p. e108869, 2014.
, “Intrinsic surface-drying properties of bioadhesive proteins.”, Angew Chem Int Ed Engl, vol. 53, no. 42, pp. 11253-6, 2014.
, “Intrinsic surface-drying properties of bioadhesive proteins.”, Angew Chem Int Ed Engl, vol. 53, no. 42, pp. 11253-6, 2014.
, “A mussel-derived one component adhesive coacervate.”, Acta Biomater, vol. 10, no. 4, pp. 1663-70, 2014.
, “A mussel-derived one component adhesive coacervate.”, Acta Biomater, vol. 10, no. 4, pp. 1663-70, 2014.
, “Optimized DPPH assay in a detergent-based buffer system for measuring antioxidant activity of proteins.”, MethodsX, vol. 1, pp. 233-238, 2014.
, “Sea star tenacity mediated by a protein that fragments, then aggregates.”, Proc Natl Acad Sci U S A, vol. 111, no. 17, pp. 6317-22, 2014.
, “Sea star tenacity mediated by a protein that fragments, then aggregates.”, Proc Natl Acad Sci U S A, vol. 111, no. 17, pp. 6317-22, 2014.
, “Structural proteins from whelk egg capsule with long range elasticity associated with a solid-state phase transition.”, Biomacromolecules, vol. 15, no. 1, pp. 30-42, 2014.
, “Structural proteins from whelk egg capsule with long range elasticity associated with a solid-state phase transition.”, Biomacromolecules, vol. 15, no. 1, pp. 30-42, 2014.
, “Surface-initiated self-healing of polymers in aqueous media.”, Nat Mater, vol. 13, no. 9, pp. 867-72, 2014.
, “BIOLOGICAL ADHESIVES. Adaptive synergy between catechol and lysine promotes wet adhesion by surface salt displacement.”, Science, vol. 349, no. 6248, pp. 628-32, 2015.
, “Bridging adhesion of mussel-inspired peptides: role of charge, chain length, and surface type.”, Langmuir, vol. 31, no. 3, pp. 1105-12, 2015.
, “Bridging adhesion of mussel-inspired peptides: role of charge, chain length, and surface type.”, Langmuir, vol. 31, no. 3, pp. 1105-12, 2015.
, “Dynamics of mussel plaque detachment.”, Soft Matter, vol. 11, no. 34, pp. 6832-9, 2015.
, “High-performance mussel-inspired adhesives of reduced complexity.”, Nat Commun, vol. 6, p. 8663, 2015.
, “Infiltration of chitin by protein coacervates defines the squid beak mechanical gradient.”, Nat Chem Biol, vol. 11, no. 7, pp. 488-95, 2015.
, “Infiltration of chitin by protein coacervates defines the squid beak mechanical gradient.”, Nat Chem Biol, vol. 11, no. 7, pp. 488-95, 2015.
, “Interfacial pH during mussel adhesive plaque formation.”, Biofouling, vol. 31, no. 2, pp. 221-7, 2015.
, “Microphase Behavior and Enhanced Wet-Cohesion of Synthetic Copolyampholytes Inspired by a Mussel Foot Protein.”, J Am Chem Soc, vol. 137, no. 29, pp. 9214-7, 2015.
, “The microscopic network structure of mussel (Mytilus) adhesive plaques.”, J R Soc Interface, vol. 12, no. 113, p. 20150827, 2015.
, “Mussel adhesive protein provides cohesive matrix for collagen type-1α.”, Biomaterials, vol. 51, pp. 51-7, 2015.
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