Publication | Open Access
Comparison of Fabrication Methods of Metal-Organic Framework Optical Thin Films
47
Citations
25
References
2018
Year
Homogeneous Metal-organic FrameworksOptical MaterialsEngineeringOrganic ElectronicsThin Film Process TechnologyOptical PropertiesMetal-organic PolyhedronThin Film ProcessingMaterials ScienceMaterials EngineeringFabrication MethodsOptical Thin FilmsThin-film FabricationOrganic SemiconductorMetal-organic FrameworksMof Thin FilmsDepth-graded Multilayer CoatingSurface ScienceApplied PhysicsThin FilmsFunctional Materials
Homogeneous metal-organic frameworks (MOFs)-based optical thin films have attracted increasing attention, since they can potentially be used as active components in optical/opt-electrical devices, and how to fabricate MOF thin films with high quality is the premise of practically using them. Herein, five fabrication methods of MOF films are systematically investigated and compared from the aspects of appearance, reflectivity, micro-morphology, surface roughness, and optical properties of the films. The famous robust Zr-based MOF, UiO-66 (UiO = University of Oslo) is chosen as a model, and the five methods are spin-coating, dip-coating, self-assembly, direct growth, and the stepwise layer by layer growth method. This study provides fundamental support for the application of MOFs in the optical field.
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