Silverfish silk is formed by entanglement of randomly coiled protein chains - ScienceDirect

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Naturally-derived biopolymer nanocomposites: Interfacial design, properties and emerging applications - ScienceDirect

Silverfish silk is formed by entanglement of randomly coiled protein chains - ScienceDirect

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Silverfish silk is formed by entanglement of randomly coiled protein chains - ScienceDirect

Naturally-derived biopolymer nanocomposites: Interfacial design, properties and emerging applications - ScienceDirect

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The other prey-capture silk: Fibres made by glow-worms (Diptera: Keroplatidae) comprise cross-β-sheet crystallites in an abundant amorphous fraction - ScienceDirect

Tuning the conformation and mechanical properties of silk fibroin hydrogels - ScienceDirect

Silverfish silk is formed by entanglement of randomly coiled protein chains - ScienceDirect

Environment-Induced Silk Fibroin Conformation Based on the Magnetic Resonance Spectroscopy

Naturally-derived biopolymer nanocomposites: Interfacial design, properties and emerging applications - ScienceDirect

Rheological behaviour of native silk feedstocks - ScienceDirect

Rheological behaviour of native silk feedstocks - ScienceDirect

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