Mussel-inspired multifunctional supramolecular hydrogels with self-healing, shape memory and adhesive properties
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Xiaoxia Le | Tao Chen | To Ngai | Youju Huang | Tao Chen | Wei Lu | Youju Huang | To Ngai | Jing Zheng | Xiaoxia Le | Jiawei Zhang | Jiawei Zhang | Xiufang Wen | Jing Zheng | Wei Lu | Zhaowen Li | Ning Zhao | Zhaowen Li | X. Wen | Ning Zhao
[1] Ying Guan,et al. Enzymatically crosslinked alginate hydrogels with improved adhesion properties , 2015 .
[2] H. Tian,et al. A rapidly self-healing supramolecular polymer hydrogel with photostimulated room-temperature phosphorescence responsiveness. , 2014, Angewandte Chemie.
[3] Sanlin S. Robinson,et al. Morphing Metal and Elastomer Bicontinuous Foams for Reversible Stiffness, Shape Memory, and Self‐Healing Soft Machines , 2016, Advanced materials.
[4] Xiaofeng Chen,et al. Multifunctional Hydrogel with Good Structure Integrity, Self-Healing, and Tissue-Adhesive Property Formed by Combining Diels-Alder Click Reaction and Acylhydrazone Bond. , 2015, ACS applied materials & interfaces.
[5] Honglei Guo,et al. Oppositely Charged Polyelectrolytes Form Tough, Self‐Healing, and Rebuildable Hydrogels , 2015, Advanced materials.
[6] B Kollbe Ahn,et al. High-performance mussel-inspired adhesives of reduced complexity , 2015, Nature Communications.
[7] Yongjun Zhang,et al. Dynamically bonded layer-by-layer films for self-regulated insulin release , 2012 .
[8] Ran Du,et al. Hierarchical hydrogen bonds directed multi-functional carbon nanotube-based supramolecular hydrogels. , 2014, Small.
[9] H. Park,et al. Mussel-mimetic self-healing polyaspartamide derivative gel via boron-catechol interactions , 2015 .
[10] Xi Zhang,et al. 25th Anniversary Article: Reversible and Adaptive Functional Supramolecular Materials: “Noncovalent Interaction” Matters , 2013, Advanced materials.
[11] Xiaolong Wang,et al. Molecularly Engineered Dual‐Crosslinked Hydrogel with Ultrahigh Mechanical Strength, Toughness, and Good Self‐Recovery , 2015, Advanced materials.
[12] Bo Zheng,et al. Stimuli-responsive supramolecular polymeric materials. , 2012, Chemical Society reviews.
[13] S. Zhang,et al. pH-induced shape-memory polymers. , 2012, Macromolecular rapid communications.
[14] Florian J. Stadler,et al. Rapid self-healing and triple stimuli responsiveness of a supramolecular polymer gel based on boron–catechol interactions in a novel water-soluble mussel-inspired copolymer , 2014 .
[15] T. Xie. Tunable polymer multi-shape memory effect , 2010, Nature.
[16] Jincui Gu,et al. Self-healable macro-/microscopic shape memory hydrogels based on supramolecular interactions. , 2014, Chemical communications.
[17] X. Zhu,et al. Multishape Memory Effect of Norbornene-Based Copolymers with Cholic Acid Pendant Groups , 2012 .
[18] Tao Chen,et al. Glucose-responsive polymer brushes for microcantilever sensing , 2010 .
[19] Haiyang Yang,et al. A shape memory hydrogel induced by the interactions between metal ions and phosphate. , 2014, Soft matter.
[20] Akira Harada,et al. Self-Healing, Expansion-Contraction, and Shape-Memory Properties of a Preorganized Supramolecular Hydrogel through Host-Guest Interactions. , 2015, Angewandte Chemie.
[21] Wei Wang,et al. Fabrication of a shape memory hydrogel based on imidazole–zinc ion coordination for potential cell-encapsulating tubular scaffold application , 2013 .
[22] Yoshihito Osada,et al. Self-healing gels based on constitutional dynamic chemistry and their potential applications. , 2014, Chemical Society reviews.
[23] X. Zhu,et al. Biocompound-Based Multiple Shape Memory Polymers Reinforced by Photo-Cross-Linking. , 2015, ACS biomaterials science & engineering.
[24] Stuart J. Rowan,et al. Inherently Photohealable and Thermal Shape-Memory Polydisulfide Networks. , 2013, ACS macro letters.
[25] O. Okay,et al. Self-Healing Poly(acrylic acid) Hydrogels with Shape Memory Behavior of High Mechanical Strength , 2014 .
[26] Yongjun Zhang,et al. Boronic acid-containing hydrogels: synthesis and their applications. , 2013, Chemical Society reviews.
[27] H. Qi,et al. Recent progress in shape memory polymer: New behavior, enabling materials, and mechanistic understanding , 2015 .