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Role of Sacrificial Protein–Metal Bond Exchange in Mussel Byssal Thread Self-Healing
Biomacromolecules, 2015Marine mussels tether to seashore surfaces with byssal threads, proteinaceous fibers that effectively dissipate energy from crashing waves. Protein-metal coordination bonds have been proposed to contribute to the characteristic mechanical and self-healing properties of byssal threads; however, very little is understood about how these cross-links ...
Schmitt, C. ; https://orcid.org/0000-0002-7646-4739 +3 more
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Sacrificial Passivation of Nanoscale Metal Powders for Transient Liquid Phase Bonding
MRS Proceedings, 2008ABSTRACTDifferential scanning calorimetry (DSC) was used to evaluate the extent of liquid phase formation in particle compacts (compressed dry powders) comprised of organically capped nano-scale Ag particles and Sn. The Ag nanoparticles employed where synthesized with various organic molecules and procedures to produce particles with a range of capping
Nick Bosco +2 more
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Reinforcement of polysiloxane/silica elastomer composite by introduction of sacrificial bonds
Journal of Applied Polymer Science, 2017ABSTRACTIt is a challenge to improve tear strength of silicone rubber, especially at high filler loading circumstances. A method is offered here to introduce sacrificial bonds into the system. In particular, amide group was introduced onto the phenyl group of monomer methyl phenyl cyclosiloxane ( first, and this functionalized monomer ( was further ...
Dannan Zhao +3 more
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Generalization of the sacrificial bond principle for gel and elastomer toughening
Polymer Journal, 2017Although conventional polymer gels are known as mechanically weak materials, their fracture toughness can be effectively improved by introducing weak and brittle bonds into soft and stretchy polymer networks. This toughening method, denoted as the ‘sacrificial bond principle’, has been recently proposed.
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Soft hydrogel-embedded ceramic skeleton mimicking bone structure via sacrificial bond concept
Soft MatterTough soft/hard composites were created, inspired by bony multiple sacrificial structures through ionic bonding, fracture of the ceramic skeleton, and interactions between the new surface of fracture skeleton and hydrogel.
null Sukamto +3 more
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Metal–Ligand Complexes as Dynamic Sacrificial Bonds in Elastic Polymers
Macromolecules, 2022Marco Mareliati +5 more
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Low Temperature Cu-Cu Bonding Using an Intermediate Sacrificial Sn Layer
IEEE Electron Device Letters, 2023Zilin Wang, Yunfan Shi, Zheyao Wang
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