| Literature DB >> 27310580 |
Zhuanling Bai1,2, Yanlong Wang1,2, Yuxiang Li1,2, Wei Liu1,2, Lanhua Chen1,2, Daopeng Sheng1,2, Juan Diwu1,2, Zhifang Chai1,2, Thomas E Albrecht-Schmitt3, Shuao Wang1,2.
Abstract
By controlling the extent of hydrolysis during the self-assembly process of a zwitterionic-based ligand with uranyl cations, we observed a structural evolution from the neutral uranyl-organic framework [(UO2)2(TTTPC)(OH)O(COOH)]·1.5DMF·7H2O (SCU-6) to the first cationic uranyl-organic framework with the formula of [(UO2)(HTTTPC)(OH)]Br·1.5DMF·4H2O (SCU-7). The crystal structures of SCU-6 and SCU-7 are layers built with tetranuclear and dinuclear uranyl clusters, respectively. Exchangeable halide anions are present in the interlaminar spaces balancing the positive charge of layers in SCU-7. Therefore, SCU-7 is able to effectively remove perrhenate anions from aqueous solution. Meanwhile, the H2PO4(-)-exchanged SCU-7 material exhibits a moderate proton conductivity of 8.70 × 10(-5) S cm(-1) at 50 °C and 90% relative humidity, representing nearly 80 times enhancement compared to the original material.Entities:
Year: 2016 PMID: 27310580 DOI: 10.1021/acs.inorgchem.6b00930
Source DB: PubMed Journal: Inorg Chem ISSN: 0020-1669 Impact factor: 5.165