Effective hydrogen isotope separation by a robust flexible calix[4]resorcinarene-based porous organic cage

Abstract

Herein, we present the design and synthesis of a new [6+12] octahedral-type porous organic cage (POC), namely CPOC-F301, assembled from 6 bowl-shaped tetraformylcalix[4]resorcinarene and 12 flexible trans-1,4-cyclohexanediamine. This cage exhibits large cavity volumes of up to ~3824 Å3, high specific surface areas of up to 966 m2/g, as well as impressive D2 (146 cm3/g) and H2 (133 cm3/g) adsorption capabilities at 77 K and 1 bar. Dynamic breakthrough experiments further demonstrate that CPOC-F301 achieves a separation factor of 1.37 with a breakthrough interval of 7.2 min·g-1 at 77 K and 1 bar.

Supplementary files

Article information

Article type
Communication
Submitted
24 Nov 2025
Accepted
07 Jan 2026
First published
07 Jan 2026

Dalton Trans., 2026, Accepted Manuscript

Effective hydrogen isotope separation by a robust flexible calix[4]resorcinarene-based porous organic cage

Y. Guo, J. Feng, W. Wang, K. Su and D. Yuan, Dalton Trans., 2026, Accepted Manuscript , DOI: 10.1039/D5DT02805A

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