0000000000083763

AUTHOR

Hesheng Xia

showing 2 related works from this author

Dynamic covalent urea bonds and their potential for development of self-healing polymer materials

2019

Self-healing polymer materials have drawn rapidly increasing interest over the last decade, and have been studied and used in an ever-increasing range of applications. Herein, we successfully make the covalent urea bond – a pinnacle of stability due to strong resonance effects – dynamic in nature through mediation of zinc salts. The dynamic covalent character of urea in the presence of zinc ions is confirmed through dissociation reaction experiments and quantum chemical calculations of small-molecule model urea compounds. In line with our experiments, the modelling results suggest that the presence of zinc ions speeds up the reaction of urea dissociation by two orders of magnitude via the f…

Solucions polimèriquesMaterials science02 engineering and technologyDissociation (chemistry)chemistry.chemical_compoundLife ScienceGeneral Materials ScienceSelf-healing materialPolyureaVLAGchemistry.chemical_classificationRenewable Energy Sustainability and the EnvironmentOrganic ChemistryGeneral ChemistryPolymerCiència dels materials021001 nanoscience & nanotechnologyIsocyanateOrganische ChemieMonomerchemistryChemical engineeringCovalent bondSiloxane0210 nano-technologyJournal of Materials Chemistry A
researchProduct

Acylsemicarbazide Moieties with Dynamic Reversibility and Multiple Hydrogen Bonding for Transparent, High Modulus, and Malleable Polymers

2020

The realization of covalent adaptable networks with excellent mechanical and dynamic properties remains a major challenge. Herein, the acylsemicarbazide (ASC) moieties with dynamic reversibility and multiple hydrogen bonding were disclosed and used to prepare transparent, high modulus, and malleable polymer networks. It was found that the ASC moiety can reversibly generate isocyanate and hydrazide at elevated temperatures, that is, exhibiting dynamic reversibility. ASC can also produce the disordered multiple hydrogen bonds that contribute to superior mechanical strength for dynamic polymers. The hydrogen bonding in ASC moieties can diminish the energy barrier for the cleavage of dynamic co…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsHydrogen bondeducationOrganic ChemistryModulusNanotechnology02 engineering and technologyPolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesOrganische Chemiehumanitieseye diseases0104 chemical sciencesInorganic ChemistrychemistryCovalent bondMaterials ChemistryLife Science0210 nano-technologyRealization (systems)VLAGMacromolecules
researchProduct