Seo Jin Young, Song Younghan, Lee Jung-Hyun, Na Jongbeom, Baek Kyung-Youl
Materials Architecturing Research Center, Korea Institute of Science Technology, Seoul 02792, Republic of Korea; Department of Chemical and Biological Engineering, Korea University, 5-1 Anam-dong, Seongbuk-gu, Seoul 02481, Republic of Korea.
Materials Architecturing Research Center, Korea Institute of Science Technology, Seoul 02792, Republic of Korea.
Carbohydr Polym. 2024 Jan 15;324:121489. doi: 10.1016/j.carbpol.2023.121489. Epub 2023 Oct 12.
Developing appropriate disposal of stockpiles of chemical warfare agents (CWAs) has gained significant attention as their lethal toxicity seriously harms humanity. In this study, a novel green-fabrication method with UiO-66 catalysts and amine-functionalized chitin nanofibers (ChNFs) was suggested to prepare durable and highly reactive membranes for decomposing chemical warfare agents (CWAs) in the continuous flow system. The strong interaction between ChNFs and the UiO-66 led to stable loading of the UiO-66 on the continuous nano-porous channel of the ChNF reactive membrane even with high loading of UiO-66 (70 wt% of UiO-66 in the ChNF substrate). In addition, the Brønsted base functionalities (-NH and -NHCOCH) of the ChNF enhanced the catalytic activity and recyclability of the UiO-66. The resulting 70-ChNF composites can effectively decompose a nerve agent simulant (methyl paraoxon) even after 7 repeatable cycles, which has been not obtained in the previous UiO-66 catalyst. The ChNF/UiO-66 reactive membranes with 1 m of the area decomposed 130 g of CWAs within an hour in a continuous flow system. We believe these robust and highly reactive membranes can provide a sustainable and efficient solution for the massive CWA disposal and also contribute to the advancement of functional membrane material science.
由于化学战剂(CWAs)的致命毒性严重危害人类,因此如何妥善处理其库存已备受关注。在本研究中,我们提出了一种采用UiO - 66催化剂和胺功能化甲壳素纳米纤维(ChNFs)的新型绿色制备方法,以制备用于在连续流动系统中分解化学战剂(CWAs)的耐用且高活性的膜。ChNFs与UiO - 66之间的强相互作用使得即使在高负载UiO - 66(在ChNF基质中UiO - 66含量为70 wt%)的情况下,UiO - 66仍能稳定地负载在ChNF反应膜的连续纳米多孔通道上。此外,ChNF的布朗斯台德碱官能团(-NH和-NHCOCH)增强了UiO - 66的催化活性和可回收性。所得的70 - ChNF复合材料即使经过7次重复循环仍能有效分解神经毒剂模拟物(甲基对硫磷),这是之前的UiO - 66催化剂所未实现的。面积为1平方米的ChNF/UiO - 66反应膜在连续流动系统中一小时内可分解130克化学战剂。我们相信,这些坚固且高活性的膜可为大规模化学战剂处理提供可持续且高效的解决方案,也有助于推动功能膜材料科学的发展。