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Updated: Jun 3, 2025

Merging Ion Concentration Polarization between Juxtaposed Ion Exchange Membranes to Block the Propagation of the Polarization Zone
Published on: February 23, 2017
Anion Exchange Impedes Subsequent Cation Exchange: Ion Mobility Is Altered by Vacancies and Ion Size
Clarisse Doligon1, Eli Rudman1, Noah Ehrenberg1
1Department of Chemistry, Franklin & Marshall College, Lancaster, Pennsylvania 17601, United States.
Abstract:
One method of achieving spatially specific, multi-component nanoheterostructures is to combine multiple forms of post-synthetic modification. Applying cation or anion exchange to Cu2-S nanorods creates complex nanoheterostructures. Combining such anion and cation exchanges generates a system which uncovers the interplay between these two processes and understands the cooperativity between postsynthetic modifications more broadly. Cd2+ exchange was carried out on various plasmonic and nonplasmonic Cu2-S/Cu2-Te nanoheterostructures to test how the presence of Te2- ions would affect the extent of Cd2+ incorporation. Three hypotheses were presented for how the presence of Cu2-Te could alter the incorporation of Cd2+ and these were used to interpret the observed changes in the extent of Cd2+ exchange and crystalline phase of the resulting particles. We found that Te2- anion exchange impedes subsequent Cd2+ cation exchange. Low extents of Te2- exchange cause a phase change where ion mobility is slowed by a decrease in Cu+ vacancies. Higher extents of Te2- exchange slow ion mobility due to the presence of large Te2- ions.
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