4.7 Article

1D-3D mixed-ligand frameworks with an unusual dmp topology tuned by intersection angles of isomeric benzenedicarboxylates: magnetic properties, gas-dependent calcination-thermolysis and energy storage performances

Journal

DALTON TRANSACTIONS
Volume 44, Issue 19, Pages 9209-9220

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5dt00963d

Keywords

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Funding

  1. National Natural Science Foundation of China [21103138]
  2. New Teacher Fund of Doctorial Program sponsored by Ministry of Education of China [20116101120023]
  3. Natural Science Foundation of Shannxi [2014JQ2057, 2013JK0672, 14JS007]

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In this work, three isomeric benzenedicarboxylates, 1,2-benzenedicarboxylic acid (o-H(2)bdc), 1,3-benzenedicarboxylic acid (m-H(2)bdc), and 1,4-benzenedicarboxylic acid (p-H(2)bdc) have been utilized as the ancillary ligands to perform a systematic study on the structural diversity of mixed-ligand frameworks. The solvothermal reactions of Co(NO3)(2) with these aromatic acids and the primary ligand 4,4'-bis(imidazolyl) biphenyl (bibp) afford three novel coordination polymers, {[Co-6(bibp)(3)(o-bdc)(6)(H2O)](CH3CN)(1.5)}(infinity) (1), [Co(bibp)(m-bdc)](infinity) (2), and [Co(bibp)(p-bdc)](infinity) (3). Owing to the different orientations of the carboxylate groups, the benzenedicarboxylates adopt various bridging modes to connect the Co-II ions into a series of 1D carboxylaten cobalt architectures based on the 1D chain, binuclear and single-ion magnetic units, respectively. These 1D architectures are further decorated by the bibp ligand to afford a 1D belt for 1, 2D double-bridging (4,4) sheet for 2, and an unusual 3D dmp framework for 3. Significantly in 3, three equivalent frameworks are interlocked with each other to represent an unprecedented three-fold interpenetrating dmp network. The structural diversity indicates that the benzenedicarboxylate plays an essential role in the assembly of mixed-ligand frameworks, and the orientation of the carboxylate group exerts an important influence on the nucleation, dimensionality and also interpenetration. Furthermore, the magnetic properties of 1 and 2 have been studied by fitting the experimental data as possible, and the magneto-structural correlation of 2 has also been well discussed. Importantly, CoO and Co3O4 were obtained from the controllable thermolysis of crystals of 1 via simple calcination treatment under different gas environments. The as-synthesized cobalt oxides display good crystallinity and appear as micro-or nanoparticles, which can be applied as supercapacitor electrodes as demonstrated by their energy storage performance in 2 M KOH electrolyte.

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