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017 7 0 _a10.1007/978-3-030-54556-7
_2DOI
035 _a(OCoLC)1343907578
035 _aSpringer-11644-978-3-030-54556-7
090 _a15959
099 _tOUVR
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100 _a20211020d2020 u |0frey50 ba
101 0 _aeng
102 _aCH
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135 _adr|||||||||||
181 _6z01
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_2rdacontent
181 1 _6z01
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182 _6z01
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_2rdamedia
182 1 _6z01
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183 1 _6z01
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200 1 _aSelf-Healing and Self-Recovering Hydrogels
_fedited by Costantino Creton
_gOguz Okay
205 _a1st ed. 2020.
214 0 _aCham
_cSpringer International Publishing
_d2020
225 0 _aAdvances in Polymer Science
_v285
_x1436-5030
230 _aDonnées textuelles
327 1 _aDual Crosslink Hydrogels with Metal-ligand Coordination Bonds: Tunable Dynamics and Mechanics under Large Deformation
_aHow to Design Both Mechanically Strong and Self-Healable Hydrogels?- Rheology, Rupture, Reinforcement and Reversibility: Computational Approaches for Dynamic Network Materials
_aMechanics of Polymer Networks with Dynamic Bonds
_aHydrophobically Associating Hydrogels with Microphase-Separated Morphologies
_aTriblock Copolymer Micelle-Crosslinked Hydrogels
_aSelf-Healing Hydrogels Based on Reversible Covalent Linkages: A Survey of Dynamic Chemical Bonds in Network Formation
_aTough and Self-Healing Hydrogels from Polyampholytes
_aDynamics in Cellulose-Based Hydrogels with Reversible Cross-Links
_aSelf-Healing Collagen-Based Hydrogel for Brain Injury Therapy.
330 _aThis volume covers experimental and theoretical advances on the relationship between composition, structure and macroscopic mechanical properties of novel hydrogels containing dynamic bonds. The chapters of this volume focus on the control of the mechanical properties of several recently discovered gels with the design of monomer composition, chain architecture, type of crosslinking or internal structure. The gels discussed in the different chapters have in common the capability to dissipate energy upon deformation, a desired property for mechanical toughness, while retaining the ability to recover the properties of the virgin material over time or to self-heal when put back in contact after fracture. Some chapters focus on the synthesis and structural aspects while others focus on properties or modelling at the continuum or mesoscopic scale. The volume will be of interest to chemists and material scientists by providing guidelines and general structure-property considerations to synthesize and develop innovative gels tuned for applications. In addition it will provide physicists with a better understanding of the role of weak interactions between molecules and physical crosslinking on macroscopic dissipative properties and self-healing or self-recovering properties.
337 _aNécessite un lecteur de fichier PDF
371 0 _aL'accès complet à la ressource est réservé aux usagers des établissements qui en ont fait l'acquisition
410 _005824946X
410 _tAdvances in polymer science (Internet)
_x1436-5030
_v285
452 _tSelf-Healing and Self-Recovering Hydrogels
_bTexte imprimé
_y9783030545550
452 _tSelf-Healing and Self-Recovering Hydrogels
_bTexte imprimé
_y9783030545574
452 _tSelf-Healing and Self-Recovering Hydrogels
_bTexte imprimé
_y9783030545581
606 _aPolymers[xc2][xa0][xc2][xa0]
_2lc
606 _aEngineering-Materials
_2lc
606 _aMaterials science
_2lc
606 _aBiomaterials
_2lc
606 _aMedicinal chemistry
_2lc
610 1 _aPolymer Sciences
610 2 _aMaterials Engineering
610 2 _aCharacterization and Evaluation of Materials
610 2 _aBiomaterials
610 2 _aMedicinal Chemistry
615 _aChemistry and Materials Science
_n11644
_2Springer.
676 _a541.2254
_v23
680 _aQD380-388
700 1 _3089016106
_aCreton
_bCostantino
_f19..-....
_cchercheur en physico-chimie
_4340
701 1 _aOkay
_bOguz
_4340
801 3 _aFR
_bAbes
_c20250613
_gAFNOR
801 1 _aDE
_bSpringer
_c20211020
_gAACR2
856 4 _qPDF
_uhttps://doi.org/10.1007/978-3-030-54556-7
_wDonnées éditeur
856 4 _uhttps://eu02.alma.exlibrisgroup.com/view/uresolver/33PUDB_UB/openurl?u.ignore_date_coverage=true&portfolio_pid=53161774830004672&Force_direct=true
_zAccès restreint aux membres de la communauté universitaire de l'établissement
_2Springer Chemistry and Materials Science eBooks 2020 English/International