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Molten-Salt Synthesis of Complex Metal Oxide Nanoparticles
Published on: October 27, 2018
Surface Terminations of LaAlO3 Perovskite Nanoparticles as Viewed by Solid-State Nuclear Magnetic Resonance
Carl H Fleischer1, Ritesh Uppuluri2, Zefeng Wei2
1Chemical and Biological Sciences Division, Ames National Laboratory, Ames, Iowa50011, United States.
None:
Nanocrystal surfaces generally undergo reconstructions that differentiate them from the bulk structures, often in nontrivial ways. Understanding these terminations is critical across diverse fields, from heterogeneous catalysis to the formation of topological states and the synthesis of semiconductor nanomaterials. Determining surface structures is currently an interdisciplinary task, most often involving high-resolution electron microscopy and surface electron diffraction. These methods, however, do not provide a global view of the ensemble of structures present in a sample. Here, we show how surface-sensitive solid-state nuclear magnetic resonance (SSNMR) spectroscopy methods can bridge this gap. In this context, we investigated the surface structure of lanthanum aluminate (LaAlO3) perovskite nanoparticles. Four distinct surface terminations have previously been observed for this material, but their relative abundances were unknown. Using an array of double- and triple-resonance SSNMR methods probing the relative proximities of surface 1H, 27Al, 17O, and 139La nuclei, we conclude the surface to be majority terminated (80%) by AlOx with substantial (20%) LaOx terminated regions.

