Mazaj et al., 2013 - Google Patents
Control of the crystallization process and structure dimensionality of Mg–Benzene–1, 3, 5-tricarboxylates by tuning solvent compositionMazaj et al., 2013
View PDF- Document ID
- 505498710790786895
- Author
- Mazaj M
- Birsa Čelič T
- Mali G
- Rangus M
- Kaucic V
- Zabukovec Logar N
- Publication year
- Publication venue
- Crystal growth & design
External Links
Snippet
Four new magnesium 1, 3, 5-benzenetricarboxylate metal–organic framework materials (NICS-n; n= 3–6) were synthesized solvothermally in the presence of solvents with different EtOH/H2O ratios. We showed that the crystallization process of the Mg–1, 3, 5 …
- 239000002904 solvent 0 title abstract description 86
Classifications
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07F—ACYCLIC, CARBOCYCLIC OR HETEROCYCLIC COMPOUNDS CONTAINING ELEMENTS OTHER THAN CARBON, HYDROGEN, HALOGEN, OXYGEN, NITROGEN, SULFUR, SELENIUM OR TELLURIUM
- C07F15/00—Compounds containing elements of Groups 8, 9, 10 or 18 of the Periodic System
- C07F15/02—Iron compounds
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Mazaj et al. | Control of the crystallization process and structure dimensionality of Mg–Benzene–1, 3, 5-tricarboxylates by tuning solvent composition | |
Kanoo et al. | Temperature-controlled synthesis of metal-organic coordination polymers: crystal structure, supramolecular isomerism, and porous property | |
Chen et al. | Synthesis, crystal structure, and photoluminescence of a series of zinc (II) coordination polymers with 1, 4-di (1 H-imidazol-4-yl) benzene and varied carboxylate ligands | |
Li et al. | Ligand bridging-angle-driven assembly of molecular architectures based on quadruply bonded Mo− Mo dimers | |
Ouellette et al. | Hydrothermal and structural chemistry of the zinc (II)-and cadmium (II)-1, 2, 4-triazolate systems | |
Dong et al. | Alkaline earth metal (Mg, Sr, Ba)–organic frameworks based on 2, 2′, 6, 6′-tetracarboxybiphenyl for proton conduction | |
Liu et al. | Solvent/temperature and dipyridyl ligands induced diverse coordination polymers based on 3-(2′, 5′-dicarboxylphenyl) pyridine | |
Qin et al. | Derivation and decoration of nets with trigonal-prismatic nodes: a unique route to reticular synthesis of metal–organic frameworks | |
Mazaj et al. | Spectroscopic studies of structural dynamics induced by heating and hydration: A case of calcium-terephthalate metal–organic framework | |
Maity et al. | Sulfonic group functionalized mixed ligand coordination polymers: synthesis, characterization, water sorption, and proton conduction studies | |
Kathalikkattil et al. | Synthesis, magnetic properties, and structural investigation of mixed-ligand Cu (II) helical coordination polymers with an amino acid backbone and N-donor propping: 1-D helical, 2-D hexagonal net (hcb), and 3-D ins topologies | |
Sahu et al. | Structural diversity and luminescence properties of coordination polymers built with a rigid linear dicarboxylate and Zn (II)/Pb (II) ion | |
Sharma et al. | Three-dimensional porous Cd (II) coordination polymer with large one-dimensional hexagonal channels: high pressure CH4 and H2 adsorption studies | |
Lin et al. | Pillaring Zn-triazolate layers with flexible aliphatic dicarboxylates into three-dimensional metal− organic frameworks | |
Ren et al. | Four novel three-dimensional pillared-layer metal-organic frameworks in the Zn/triazolate/carboxylate system: hydrothermal synthesis, crystal structure, and luminescence properties | |
Yang et al. | Metal–organic frameworks based on flexible V-shaped polycarboxylate acids: hydrogen bondings, non-interpenetrated and polycatenated | |
Sun et al. | Construction of 3D layer-pillared homoligand coordination polymers from a 2D layered precursor | |
Tseng et al. | Porous metal–organic frameworks with multiple cages based on tetrazolate ligands: synthesis, structures, photoluminescence, and gas adsorption properties | |
Li et al. | Syntheses, structures, and properties of silver–organic frameworks constructed with 1, 1′-biphenyl-2, 2′, 6, 6′-tetracarboxylic acid | |
Halder et al. | Structural diversity in six mixed ligand Zn (II) metal–organic frameworks constructed by rigid and flexible dicarboxylates and different N, N′ donor ligands | |
Hua et al. | Synthesis, structures, and properties of zinc (II) and cadmium (II) complexes with 1, 2, 4, 5-tetrakis (imidazol-1-ylmethyl) benzene and multicarboxylate ligands | |
Han et al. | Silver (I)/Bipyrazole/Dicarboxylate interpenetrated coordination networks: spontaneous chiral resolution, modulation of topologies, water clusters, and photoluminescences | |
Sun et al. | Three-and eight-fold interpenetrated ThSi2 metal–organic frameworks fine-tuned by the length of ligand | |
Jassal et al. | Structural diversity, thermal studies, and luminescent properties of metal complexes of dinitrobenzoates: a single crystal to single crystal transformation from dimeric to polymeric complex of copper (II) | |
Liu et al. | New luminescent three-dimensional Zn (II)/cd (II)-based metal–organic frameworks showing high H2 uptake and CO2 selectivity capacity |