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Abstract
Immobilization of graphene quantum dots (GQDs) on a solid support is crucial to prevent GQDs from aggregation in the form of solid powder and facilitate the separation and recycling of GQDs after use. Herein, spatially dispersed GQDs are post-synthetically coordinated within a two-dimensional (2D) and water-stable zirconium-based metal–organic framework (MOF). Unlike pristine GQDs, the obtained GQDs immobilized on 2D MOF sheets show photoluminescence in both suspension and dry powder. Chemical and photoluminescent stabilities of MOF-immobilized GQDs in water are investigated, and the use of immobilized GQDs in the photoluminescent detection of copper ions is demonstrated. Findings here shed the light on the use of 2D MOFs as a platform to further immobilize GQDs with various sizes and distinct chemical functionalities for a range of applications.
Graphene quantum dots have versatile properties, but their luminescence can be quenched when the dots aggregate. Here, the authors immobilize graphene quantum dots on 2D MOF sheets and demonstrate their photoluminescence in suspension and as a dry powder, and show their application in copper ion sensing.
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1 National Cheng Kung University, Department of Chemical Engineering, Tainan City, Taiwan (GRID:grid.64523.36) (ISNI:0000 0004 0532 3255)
2 National Taiwan University of Science and Technology (NTUST), Department of Chemical Engineering, Taipei City, Taiwan (GRID:grid.45907.3f) (ISNI:0000 0000 9744 5137)
3 National Taiwan University of Science and Technology (NTUST), Department of Chemical Engineering, Taipei City, Taiwan (GRID:grid.45907.3f) (ISNI:0000 0000 9744 5137); NTUST, Sustainable Electrochemical Energy Development (SEED) Center, Taipei City, Taiwan (GRID:grid.45907.3f) (ISNI:0000 0000 9744 5137); NTUST, Advanced Manufacturing Research Center, Taipei City, Taiwan (GRID:grid.45907.3f) (ISNI:0000 0000 9744 5137)