Tuneable ion selectivity in vermiculite membranes intercalated with unexchangeable ions
Abstract
Abstract Membranes selective to ions of the same charge are increasingly sought for water waste processing and valuable element recovery. However, while narrow channels are known to be essential, other membrane parameters remain difficult to identify and control. Here we show that Zr⁴⁺, Sn⁴⁺, Ir⁴⁺, and La³⁺ ions intercalated into vermiculite laminate membranes become effectively unexchangeable, creating stable channels, one to two water layers wide, that exhibit robust and tuneable ion selectivity. Ion permeability in these membranes spans five orders of magnitude, following a trend dictated by the ions’ Gibbs free energy of hydration. Unexpectedly, different intercalated ions lead to two distinct monovalent ion selectivity sequences, despite producing channels of identical width. The selectivity instead correlates with the membranes’ stiffness and the entropy of hydration of the intercalated ions. These results introduce an ion selectivity mechanism driven by entropic and mechanical effects, beyond classical size and charge exclusion.
Article Details
Authors (11)
Zhuang Liu
Macao Institute of Materials Science and Engineering
Yumei Tan
Jianhao Qian
Department of Civil and Environmental Engineering, Rice University 1 , Houston, Texas 77005,
Min Cao
Eli Hoenig
Guowei Yang
Fengchao Wang
Francois M. Peeters
Yi-Chao Zou
Liang-Yin Chu
Marcelo Lozada-Hidalgo