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用于在静态条件下高效捕获气态碘的异质层状金属有机框架的构建。

Construction of heterogeneous MOF-on-MOF for highly efficient gaseous iodine sequestration under static conditions.

作者信息

Liu Linshuai, Wang Nannan, He Chunlin, Wei Yuezhou, Wang Jingjing, Wang Xinpeng

机构信息

State Key Laboratory of Featured Metal Materials and Life-cycle Safety for Composite Structures, School of Resources, Environment and Materials, Guangxi University, Nanning 530004, PR China.

School of Nuclear Science and Technology, University of South China, Hengyang 421001, PR China.

出版信息

J Hazard Mater. 2024 Dec 5;480:136017. doi: 10.1016/j.jhazmat.2024.136017. Epub 2024 Sep 30.

DOI:10.1016/j.jhazmat.2024.136017
PMID:39362121
Abstract

Considering the unexpected nuclear power waste emission and potential nuclear leakage, the exploration of robust materials for the effective capture and storage of radioactive iodine is of great importance but still remains a challenge. In this work, we report the rational synthesis of functionalized NH-UiO-66-on-ZIF-67 architecture to enhance the static adsorption and retention of volatile iodine. Such MOF-on-MOF heterostructures was fabricated through seeding ZIF-67 core on the surface of NH-UiO-66 satellite via a facile polyvinylpyrrolidone (PVP) regulated internal extended growth strategies. NH-UiO-66-on-ZIF-67 exhibited unique core-satellite structure, which significantly promotes the binding interactions with iodine through synergizing of the N-rich imidazole moieties and surface functionalized amino groups within the porosity channels. As a result, the as fabricated NH-UiO-66-on-ZIF-67 achieves enhanced mass diffusion and high capture capacity of 3600 mg/g for iodine vapor under static sorption conditions. Moreover, water vapor in humid conditions (relative humidity of 18 %) has almost no effect on the static iodine adsorption performance of the material. This study sheds light on a reliable MOF-on-MOF hybrid strategy for effective radioiodine treatment to ensure the safety nuclear waste management.

摘要

考虑到意外的核电废料排放和潜在的核泄漏,探索用于有效捕获和储存放射性碘的坚固材料至关重要,但仍然是一项挑战。在这项工作中,我们报道了功能化的NH-UiO-66-on-ZIF-67结构的合理合成,以增强对挥发性碘的静态吸附和保留。这种MOF-on-MOF异质结构是通过一种简便的聚乙烯吡咯烷酮(PVP)调节的内部扩展生长策略,在NH-UiO-66卫星表面播种ZIF-67核而制备的。NH-UiO-66-on-ZIF-67呈现出独特的核-卫星结构,通过孔隙通道内富含氮的咪唑部分和表面功能化氨基的协同作用,显著促进了与碘的结合相互作用。结果,所制备的NH-UiO-66-on-ZIF-67在静态吸附条件下实现了增强的质量扩散和对碘蒸气3600 mg/g的高捕获容量。此外,潮湿条件(相对湿度为18%)下的水蒸气对该材料的静态碘吸附性能几乎没有影响。这项研究为一种可靠的MOF-on-MOF混合策略用于有效的放射性碘处理以确保核废料管理安全提供了思路。

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