稀土
尾矿
萃取(化学)
选择性
化学
色谱分离
土(古典元素)
组合化学
稀土元素
金属
二进制数
矿物学
物理化学
物理
色谱法
有机化学
催化作用
数学
高效液相色谱法
数学物理
算术
作者
Qinghua Hu,An‐Min Song,Xin Gao,Yu-Zhen Shi,Wei Jiang,Ru‐Ping Liang,Jian‐Ding Qiu
标识
DOI:10.1038/s41467-024-45810-1
摘要
Abstract Extracting rare earth elements (REEs) from wastewater is essential for the growth and an eco-friendly sustainable economy. However, it is a daunting challenge to separate individual rare earth elements by their subtle differences. To overcome this difficulty, we report a unique REE nanotrap that features dense uncoordinated carboxyl groups and triazole N atoms in a two-fold interpenetrated metal-organic framework (named NCU-1). Notably, the synergistic effect of suitable pore sizes and REE nanotraps in NCU-1 is highly responsive to the size variation of rare-earth ions and shows high selectivity toward light REE. As a proof of concept, Pr/Lu and Nd/Er are used as binary models, which give a high separation factor of SF Pr/Lu = 796 and SF Nd/Er = 273, demonstrating highly efficient separation over a single step. This ability achieves efficient and selective extraction and separation of REEs from mine tailings, establishing this platform as an important advance for sustainable obtaining high-purity REEs.
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