DOE OSTI · 1774117
Cation-Specific Electrokinetic Separations Using Prussian Blue Intercalation Reactions
Abstract
In this work, we report a new approach for forming ion depletion zones (IDZs) using intercalation reactions at an electrochemically controlled Prussian blue (PB) film. The experiments described here were performed using a microfluidic device, wherein a charged fluorophore in solution was used as a proxy to monitor IDZ formation. In the presence of K + , intercalation reactions proceed readily to form an IDZ, and thus enrich the fluorophore up to 37-fold. In the presence of the larger hydrated Li + or tetrabutylammonium (TBA + ) ions, however, ion intercalation proceeded less quickly than with K + . Slower ion intercalation resulted in a weaker IDZ and correspondingly lower enrichment factors of eight- and six-fold, respectively. These results are significant because they show that PB intercalation reactions selectively form an IDZ. Accordingly, we anticipate that these findings will lead to a better understanding and further interesting applications of intercalation materials like PB for efficient and selective enrichment and separations.
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Thompson, Jonathan R., Davies, Collin D., Clausmeyer, Jan, Crooks, Richard M.. 2020-10-14. Cation-Specific Electrokinetic Separations Using Prussian Blue Intercalation Reactions. https://doi.org/10.1002/celc.202001095
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