Fatty acid capped, metal oxo clusters as the smallest conceivable nanocrystal prototypes
- Author
- Dietger Van den Eynden, Rohan Pokratath, Jikson Pulparayil Mathew, Eline Goossens (UGent) , Klaartje De Buysser (UGent) and Jonathan De Roo
- Organization
- Project
- Abstract
- Metal oxo clusters of the type M6O4(OH)(4)(OOCR)(12) (M = Zr or Hf) are valuable building blocks for materials science. Here, we synthesize a series of zirconium and hafnium oxo clusters with ligands that are typically used to stabilize oxide nanocrystals (fatty acids with long and/or branched chains). The fatty acid capped oxo clusters have a high solubility but do not crystallize, precluding traditional purification and single-crystal XRD analysis. We thus develop alternative purification strategies and we use X-ray total scattering and Pair Distribution Function (PDF) analysis as our main method to elucidate the structure of the cluster core. We identify the correct structure from a series of possible clusters (Zr3, Zr4, Zr6, Zr12, Zr10, and Zr26). Excellent refinements are only obtained when the ligands are part of the structure model. Further evidence for the cluster composition is provided by nuclear magnetic resonance (NMR), infrared spectroscopy (FTIR), thermogravimetry analysis (TGA), and mass spectrometry (MS). We find that hydrogen bonded carboxylic acid is an intrinsic part of the oxo cluster. Using our analytical tools, we elucidate the conversion from a Zr6 monomer to a Zr12 dimer (and vice versa), induced by carboxylate ligand exchange. Finally, we compare the catalytic performance of Zr12-oleate clusters with oleate capped, 5.5 nm zirconium oxide nanocrystals in the esterification of oleic acid with ethanol. The oxo clusters present a five times higher reaction rate, due to their higher surface area. Since the oxo clusters are the lower limit of downscaling oxide nanocrystals, we present them as appealing catalytic materials, and as atomically precise model systems. In addition, the lessons learned regarding PDF analysis are applicable to other areas of cluster science as well, from semiconductor and metal clusters, to polyoxometalates.
- Keywords
- ORGANIC FRAMEWORKS, OXIDE NANOCRYSTALS, MECHANISTIC INSIGHT, CRYSTAL-STRUCTURE, ATOMIC-STRUCTURE, SCALE SYNTHESIS, NANOPARTICLES, CHEMISTRY, LIGANDS, CORE
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-01GVFWG68GNA2F09X1QSV5E53J
- MLA
- Van den Eynden, Dietger, et al. “Fatty Acid Capped, Metal Oxo Clusters as the Smallest Conceivable Nanocrystal Prototypes.” CHEMICAL SCIENCE, vol. 14, no. 3, 2023, pp. 573–85, doi:10.1039/d2sc05037d.
- APA
- Van den Eynden, D., Pokratath, R., Mathew, J. P., Goossens, E., De Buysser, K., & De Roo, J. (2023). Fatty acid capped, metal oxo clusters as the smallest conceivable nanocrystal prototypes. CHEMICAL SCIENCE, 14(3), 573–585. https://doi.org/10.1039/d2sc05037d
- Chicago author-date
- Van den Eynden, Dietger, Rohan Pokratath, Jikson Pulparayil Mathew, Eline Goossens, Klaartje De Buysser, and Jonathan De Roo. 2023. “Fatty Acid Capped, Metal Oxo Clusters as the Smallest Conceivable Nanocrystal Prototypes.” CHEMICAL SCIENCE 14 (3): 573–85. https://doi.org/10.1039/d2sc05037d.
- Chicago author-date (all authors)
- Van den Eynden, Dietger, Rohan Pokratath, Jikson Pulparayil Mathew, Eline Goossens, Klaartje De Buysser, and Jonathan De Roo. 2023. “Fatty Acid Capped, Metal Oxo Clusters as the Smallest Conceivable Nanocrystal Prototypes.” CHEMICAL SCIENCE 14 (3): 573–585. doi:10.1039/d2sc05037d.
- Vancouver
- 1.Van den Eynden D, Pokratath R, Mathew JP, Goossens E, De Buysser K, De Roo J. Fatty acid capped, metal oxo clusters as the smallest conceivable nanocrystal prototypes. CHEMICAL SCIENCE. 2023;14(3):573–85.
- IEEE
- [1]D. Van den Eynden, R. Pokratath, J. P. Mathew, E. Goossens, K. De Buysser, and J. De Roo, “Fatty acid capped, metal oxo clusters as the smallest conceivable nanocrystal prototypes,” CHEMICAL SCIENCE, vol. 14, no. 3, pp. 573–585, 2023.
@article{01GVFWG68GNA2F09X1QSV5E53J, abstract = {{Metal oxo clusters of the type M6O4(OH)(4)(OOCR)(12) (M = Zr or Hf) are valuable building blocks for materials science. Here, we synthesize a series of zirconium and hafnium oxo clusters with ligands that are typically used to stabilize oxide nanocrystals (fatty acids with long and/or branched chains). The fatty acid capped oxo clusters have a high solubility but do not crystallize, precluding traditional purification and single-crystal XRD analysis. We thus develop alternative purification strategies and we use X-ray total scattering and Pair Distribution Function (PDF) analysis as our main method to elucidate the structure of the cluster core. We identify the correct structure from a series of possible clusters (Zr3, Zr4, Zr6, Zr12, Zr10, and Zr26). Excellent refinements are only obtained when the ligands are part of the structure model. Further evidence for the cluster composition is provided by nuclear magnetic resonance (NMR), infrared spectroscopy (FTIR), thermogravimetry analysis (TGA), and mass spectrometry (MS). We find that hydrogen bonded carboxylic acid is an intrinsic part of the oxo cluster. Using our analytical tools, we elucidate the conversion from a Zr6 monomer to a Zr12 dimer (and vice versa), induced by carboxylate ligand exchange. Finally, we compare the catalytic performance of Zr12-oleate clusters with oleate capped, 5.5 nm zirconium oxide nanocrystals in the esterification of oleic acid with ethanol. The oxo clusters present a five times higher reaction rate, due to their higher surface area. Since the oxo clusters are the lower limit of downscaling oxide nanocrystals, we present them as appealing catalytic materials, and as atomically precise model systems. In addition, the lessons learned regarding PDF analysis are applicable to other areas of cluster science as well, from semiconductor and metal clusters, to polyoxometalates.}}, author = {{Van den Eynden, Dietger and Pokratath, Rohan and Mathew, Jikson Pulparayil and Goossens, Eline and De Buysser, Klaartje and De Roo, Jonathan}}, issn = {{2041-6520}}, journal = {{CHEMICAL SCIENCE}}, keywords = {{ORGANIC FRAMEWORKS,OXIDE NANOCRYSTALS,MECHANISTIC INSIGHT,CRYSTAL-STRUCTURE,ATOMIC-STRUCTURE,SCALE SYNTHESIS,NANOPARTICLES,CHEMISTRY,LIGANDS,CORE}}, language = {{eng}}, number = {{3}}, pages = {{573--585}}, title = {{Fatty acid capped, metal oxo clusters as the smallest conceivable nanocrystal prototypes}}, url = {{http://doi.org/10.1039/d2sc05037d}}, volume = {{14}}, year = {{2023}}, }
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