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Anodic Electrodeposition of IrO Nanoparticles from Aqueous Nanodroplets
Saptarshi Paul1, Joshua Reyes-Morales1, Kingshuk Roy1
1Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, United States.
Abstract:
Electrodeposition has been used for centuries to create new materials. However, synthetic platforms are still necessary to enrich a variety of nanomaterials that can be electrodeposited. For instance, IrO is a popular material for the water oxidation reaction, but electrodeposition strategies for the controlled growth of IrO nanoparticles are lacking. Here, we demonstrate the anodic electrodeposition of IrO nanoparticles from aqueous nanodroplets. Field emission scanning electron microscopy (FESEM) and scanning transmission electron microscopy (STEM) images confirm the macro- and microstructure of the resulting nanoparticles. IrO nanoparticles of 43 ± 10 nm in diameter were achieved. X-ray photoelectron spectroscopy (XPS) showed the presence of Ir(III) and Ir(IV) hydrated oxyhydroxide species. The synthesis of IrO nanoparticles under anodic conditions using water nanodroplets expands the capabilities of our technique and provides a tunable platform for IrO nanoparticle electrodeposition.
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