Fast, strong, and reversible adhesives with dynamic covalent bonds for potential use in wound dressing
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Summary
The incorporation of ultrafast and partially activated dynamic covalent bonds offers a concept for the next generation of wound dressing adhesives.
- Type
- article
- Published
- 2022-07-13
- Cited by
- 137
- References
- 48
- Access
- Open access
- OpenAlex
- https://openalex.org/W4285086585
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:250549009
Keywords
Adhesive, Covalent bond, Materials science, Adhesion, Composite material
References
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- A surprise from 1954: siloxane equilibration is a simple, robust, and obvious polymer self-healing mechanism.
- A Thermally Re-mendable Cross-Linked Polymeric Material
- Silica-Like Malleable Materials from Permanent Organic Networks
- Nanoparticle solutions as adhesives for gels and biological tissues
- Catalyst-free room-temperature self-healing elastomers based on aromatic disulfide metathesis
- pH- and sugar-induced shape memory hydrogel based on reversible phenylboronic acid-diol ester bonds.
- Buckling‐Based Strong Dry Adhesives Via Interlocking
- Triply-responsive boronic acid block copolymers: solution self-assembly induced by changes in temperature, pH, or sugar concentration.
- Enhanced Shear Adhesion by Mechanical Interlocking of Dual-Scaled Elastomeric Micropillars With Embedded Silica Particles
- Dynamic imine chemistry.
- From micro to nano contacts in biological attachment devices
- Synthesis and Applications of Boronic Acid-Containing Polymers: From Materials to Medicine.
- Reprocessing and Recycling of Highly Cross-Linked Ion-Conducting Networks through Transalkylation Exchanges of C-N Bonds.
- Chemical Stress-Relaxation of Polydimethylsiloxane Elastomers1
- Making and Remaking Dynamic 3D Structures by Shining Light on Flat Liquid Crystalline Vitrimer Films without a Mold.
- Control of Imine Exchange Kinetics with Photoswitches to Modulate Self-Healing in Polysiloxane Networks by Light Illumination.
- On-demand dissolution of a dendritic hydrogel-based dressing for second-degree burn wounds via thiol-thioester exchange reaction
- Toward Self-Healing Hydrogels Using One-Pot Thiol-Ene Click and Borax-Diol Chemistry.
- Integrating Mussel Chemistry into a Bio-Based Polymer to Create Degradable Adhesives
Cited by
- Volcano lurking under Pacific’s surface has an explosive past
- Reversible Adhesive Hydrogel with Enhanced Sampling Efficiency Boosted by Hydrogen Bond and van der Waals Force for Visualized Detection
- Strong Biopolymer-Based Nanocomposite Hydrogel Adhesives with Removability and Reusability for Damaged Tissue Closure and Healing.
- Tissue adhesives for wound closure
- Integrating zinc/silicon dual ions with 3D-printed GelMA hydrogel promotes in situ hair follicle regeneration
- Bioinspired nucleobase-containing polyelectrolytes as robust and tunable adhesives by balancing the adhesive and cohesive properties
- Reversible adhesives with controlled wrinkling patterns for programmable integration and discharging
- Advances in Functional Hydrogel Wound Dressings: A Review
- Conductive hydrogels for bioenergy harvesting and self-powered application
- A high-performance, full-degradable bioinspired newspaper-based composite enhanced by borate ester bonds
- Orchestrating Asymmetric Surface Functionalities on Hydrogel Stamps where Adhesion Meets Lubrication
- Injectable, Tough, and Thermoplastic Supramolecular Hydrogel Coatings with Controllable Adhesion for Touch Sensing.
- Asymmetric “Janus” Biogel for Human‐Machine Interfaces
- Interphases Developed by Interfacial Reactions in Polypropylene-Aluminum Joints Unveiled by Local Thermomechanical Analysis
- Disentangling Origins of Adhesive Bonding at Interfaces between Epoxy/Amine Adhesive and Aluminum.
- Plant-based Biomass/Polyvinyl Alcohol Gels for Flexible Sensors.
- Tough adhesion enhancing strategies for injectable hydrogel adhesives in biomedical applications.
- Electrically Detachable Ionic Conductive Epoxy Adhesives with High Bonding Strength
- Highly Stretchable, Transparent, and Adhesive Double-Network Hydrogel Dressings Tailored with Fish Gelatin and Glycyrrhizic Acid for Wound Healing.
- The circular economy potential of reversible bonding in smartphones
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