Publication | Closed Access
Edge Capping of 2D‐MXene Sheets with Polyanionic Salts To Mitigate Oxidation in Aqueous Colloidal Suspensions
128
Citations
30
References
2019
Year
Colloidal MaterialEngineeringElectrode-electrolyte InterfaceChemistryAbstract MxenesConducting PolymerChemical EngineeringEdge CappingMxenesMaterials SciencePolyanionic SaltsColloidal PropertyEnergy StorageAqueous Colloidal SuspensionsEnergy MaterialElectrochemistryColloidal SystemNanomaterialsPolymer ScienceMxene OxidationFunctional Materials
Abstract MXenes have shown promise in myriad applications, such as energy storage, catalysis, EMI shielding, among many others. However, MXene oxidation in aqueous colloidal suspensions when stored in water at ambient conditions remains a challenge. It is now shown that by simply capping the edges of individual MXene flakes, Ti 3 C 2 T z and V 2 CT z , by polyanions such as polyphosphates, polysilicates or polyborates, it is possible to quite significantly reduce their propensity for oxidation even when held in aerated water for weeks. This breakthrough resulted from the realization that the edges of MXene sheets are positively charged. It is thus an example of selectively functionalizing the edges differently from the MXene sheet surfaces.
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