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Four new isostructural metal-organic frameworks constructed by a new butterfly-typed nitroheterocyclic carboxylic acid: Synthesis, crystal structures and properties.

Authors :
Pi, Qiu
Wang, Yan-Jiang
Sun, Ya-Ya
Wu, Ya-Pan
Wu, Xue-Qian
Li, Yong-Shuang
Li, Dong-Sheng
Source :
Journal of Solid State Chemistry. Jan2022, Vol. 305, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

Four new isostructural coordination polymers, [M 2 (μ 2 -H 2 O)(DTBC) 2 ] (CTGU- 26(M), M ​= ​Zn, Cd, Co and Ni] have been prepared with a new butterfly-typed nitroheterocyclic 4,6-di- 1H-1,2,4-triazol-1-yi-1,3-benzenedicarboxylic acid(H 2 DTBC) ligand and metal salts under hydrothermal condition. CTGU-26(Zn) features an unusual 2-nodal (4, 8)-connected scu topological network generated by [Zn 2 (μ 2 -H 2 O)(COO) 4 ] units and DTBC2− anion linkers. Luminescent properties measurements indicate that both CTGU-26(Zn) and CTGU-26(Cd) show intense fluorescence-emission compared with free H 2 DTBC ligand in solid state. Moreover, the electrocatalytic activities of CTGU-26(Co) and CTGU-26(Ni) towards methanol oxidation reaction (MOR) of two compounds were also investigated. Remarkably, by combining each MOF with the conductive 2,3,6,7,10,11-hexahydroxytriphenylene(HHTP) additive, a composite material, HHTP/CTGU-26(Ni)–I was confirmed to have an excellent performance for MOR with a high mass specific peak current of 25.55 ​mA ​cm−2. Four new isostructural coordination polymers, [M 2 (μ 2 -H 2 O)(DTBC) 2 ] (CTGU-26(M), M ​= ​Zn, Cd, Co and Ni] have been prepared with one new butterfly-typed nitroheterocyclic carboxylate ligand was prepared and characterized. And the luminescent properties and methanol oxidation reaction were also discussed. [Display omitted] • Four new isostructural coordination polymers have been prepared with a new butterfly-typed nitroheterocyclic carboxylic acid. • They feature an unusual 2-nodal (4,8)-connected scu topological network generated by binuclear units and DTBC2− anion linkers. • The luminescent properties and the electrocatalytic MOR activities of four complexes has been studied and discussed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00224596
Volume :
305
Database :
Academic Search Index
Journal :
Journal of Solid State Chemistry
Publication Type :
Academic Journal
Accession number :
153870526
Full Text :
https://doi.org/10.1016/j.jssc.2021.122617