College of Chemistry and Materials Science, Guangdong Provincial Key Laboratory of Functional Supramolecular Coordination Materials and Applications, Jinan University, Guangzhou, 510632, China.
Nat Commun. 2022 Dec 15;13(1):7771. doi: 10.1038/s41467-022-35467-z.
The design of adsorbents for rapid, selective extraction of ultra-trace amounts of gold from complex liquids is desirable from both an environmental and economical point of view. However, the development of such materials remains challenging. Herein, we report the fabrication of two vinylene-linked two-dimensional silver(I)-organic frameworks prepared via Knoevenagel condensation. This material enables selective sensing of gold with a low limit of detection of 60 ppb, as well as selective uptake of ultra-trace gold from complex aqueous mixtures including distilled water with 15 competing metal ions, leaching solution of electronic waste (e-waste), wastewater, and seawater. The present adsorbent delivers a gold adsorption capacity of 954 mg g, excellent selectivity and reusability, and can rapidly and selectively extract ultra-trace gold from seawater down to ~20 ppb (94% removal in 10 minutes). In addition, the purity of recovered gold from e-waste reaches 23.8 Karat (99.17% pure).
从环境和经济角度来看,设计用于从复杂液体中快速、选择性提取痕量金的吸附剂是可取的。然而,此类材料的开发仍然具有挑战性。在此,我们报告了通过 Knoevenagel 缩合制备的两种乙烯基连接的二维银(I)有机框架。该材料能够选择性地检测金,检测限低至 60 ppb,并且能够从包括蒸馏水在内的复杂水混合物中选择性地摄取痕量金,其中含有 15 种竞争金属离子、电子废物(电子废物)浸出液、废水和海水。目前的吸附剂的金吸附容量为 954 mg g,具有出色的选择性和可重复使用性,可以快速、选择性地从海水中提取痕量金,低至~20 ppb(10 分钟内去除 94%)。此外,从电子废物中回收的金的纯度达到 23.8 开尔文(99.17%纯)。