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February 23, 2026Nature Communications0 citationsOpen Access

Guest-induced porous gating of a fluorescent nonporous adaptive crystal for efficient radioactive iodine sorption

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QZQiaoru ZhangXLXianhu LiuYGYongxian Guo

Key Points

  • The research aims to explore the guest-induced porous gating property of nonporous adaptive crystals for iodine sorption.
  • Demonstration of the crystalline structures of NACs in response to guest molecules.
  • Characterization of CryRod and CryQuad for their iodine uptake capabilities.
  • Measurement of iodine absorption capacity at elevated temperatures.
  • CryQuad shows the highest iodine uptake capacity of 3.1 g g−1 at 75 °C.
  • The gating of pores enhances the adsorption properties of NACs.
  • The study highlights the real-world application potential for iodine storage.

Abstract

Nonporous adaptive crystals (NACs) are a new class of organic adsorbents that benefit from the ability of their crystalline structures to adaptively transform in response to specific guest molecules. Herein, a NAC with guest-induced porous gating property is demonstrated within a small organic molecule, BiPyBz. It produces two distinct crystals, the dense packing CryRod and the pore-gating CryQuad, in which the pores are opened by water. Remarkably, both CryRod and CryQuad can be used as adsorbents for gaseous iodine, with the latter demonstrating the highest uptake capacity of 3.1 g g−1 at 75 °C among all existing NACs constructed from small organic molecules. The superior iodine adsorption capacity is attributed to the synergistic effect of iodine loaded in gated pores and neighboring layers in the formed crystal. This study underscores the potential of small organic molecules as NACs for the effective adsorption and storage of guest molecules with promising real-world applications. Nonporous adaptive crystals change their crystalline structures to adaptively transform in response to specific guest molecules. Here, the authors investigate the guest-induced porous gating property of an organic molecule that is used as adsorbent for iodine.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/699ba08472792ae9fd870534https://doi.org/10.1038/s41467-026-69608-5
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