6533b7d5fe1ef96bd12653de
RESEARCH PRODUCT
Isoreticular two-dimensional magnetic coordination polymers prepared through pre-synthetic ligand functionalization
Iñigo J. Vitorica-yrezabalP. J. BereciartuaP. J. BereciartuaJavier López-cabrellesSamuel Mañas-valeroEugenio CoronadoPeter G. SteenekenG. Mínguez EspallargasBruno J. C. VieiraJoão C. WaerenborghJosé Alberto Rodríguez-velamazánDejan DavidovikjH. S. J. Van Der Zantsubject
chemistry.chemical_classificationSolucions polimèriquesChemistryLigandMagnetismGeneral Chemical EngineeringNanotechnology02 engineering and technologyGeneral ChemistryPolymerCiència dels materials010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesExfoliation joint0104 chemical sciencesMonolayerSurface modificationMoleculeIsostructural0210 nano-technologydescription
Chemical functionalization is a powerful approach to tailor the physical and chemical properties of two-dimensional (2D) materials, increase their processability and stability, tune their functionalities and, even, create new 2D materials. This is typically achieved through post-synthetic functionalization by anchoring molecules on the surface of an exfoliated 2D crystal, but it inevitably alters the long-range structural order of the material. Here we present a pre-synthetic approach that allows the isolation of crystalline, robust and magnetic functionalized monolayers of coordination polymers. A series of five isostructural layered magnetic coordination polymers based on Fe(ii) centres and different benzimidazole derivatives (bearing a Cl, H, CH3, Br or NH2 side group) were first prepared. On mechanical exfoliation, 2D materials are obtained that retain their long-range structural order and exhibit good mechanical and magnetic properties. This combination, together with the possibility to functionalize their surface at will, makes them good candidates to explore magnetism in the 2D limit and to fabricate mechanical resonators for selective gas sensing.
year | journal | country | edition | language |
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2018-01-01 | Nature Chemistry |