Energy dispersive-EXAFS of Pd nucleation at a liquid/liquid interface

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Abstract

Energy dispersive extended X-ray absorption fine structure (EDE) has been applied to Pd nanoparticle nucleation at a liquid/liquid interface under control over the interfacial potential and thereby the driving force for nucleation. Preliminary analysis focusing on Pd K edge-step height determination shows that under supersaturated conditions the concentration of Pd near the interface fluctuate over a period of several hours, likely due to the continuous formation and dissolution of sub-critical nuclei. Open circuit potential measurements conducted ex-situ in a liquid/liquid electrochemical cell support this view, showing that the fluctuations in Pd concentration are also visible as variations in potential across the liquid/liquid interface. By decreasing the interfacial potential through inclusion of a common ion (tetraethylammonium, TEA+) the Pd nanoparticle growth rate could be slowed down, resulting in a smooth nucleation process. Eventually, when the TEA+ ions reached an equilibrium potential, Pd nucleation and particle growth were inhibited.

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Chang, S. Y., Booth, S. G., Uehara, A., Mosselmans, J. F. W., Cibin, G., Pham, V. T., … Schroeder, S. L. M. (2016). Energy dispersive-EXAFS of Pd nucleation at a liquid/liquid interface. In Journal of Physics: Conference Series (Vol. 712). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/712/1/012058

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