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Updated: Jan 12, 2026

Hyperpolarized Xenon for NMR and MRI Applications
Published on: September 6, 2012
Size-inverse molecular sieving xenon/krypton separation through cation-tuned gating effect within Linde Type A
Daisong Chen1,2, Tianyi Zhang1,2, Xin Yin1,2
1City University of Hong Kong Shenzhen Research Institute, 8 Yuexing 1st Road, Shenzhen Hi-Tech Industrial Park, Nanshan District, Shenzhen, China.
None:
Achieving highly selective xenon/krypton separation is a longstanding challenge due to the similar physicochemical properties of these noble gases. Here, we develop the cation-tuned gating sieving mechanism in Linde Type A zeolites to achieve a high xenon/krypton IAST selectivity over 1600. Through the cation exchange by Ag+ to introduce the preferential binding of xenon over krypton gas, followed by Ca²⁺ exchange to modulate cation density within the pore cavity so as to facilitate xenon uptake, the resulting Ag9Ca1.5A overcomes the kinetic limitations and achieves a dynamic xenon/krypton selectivity of 30 - the highest reported in the open literature - along with a high dynamic xenon uptake of 1.65 mmol/g. In this work, the sieving separation mechanism is exclusively established by the combined isothermal adsorption measurements, breakthrough experiments, synchrotron powder X-ray diffraction, X-ray absorption spectra, and ab initio density functional theory calculations.
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