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Cobalt coordination polymer with reversible monocrystal-monocrystal transformation behavior

A technology of coordination polymers and single crystals, used in cobalt organic compounds, other chemical processes, chemical instruments and methods, etc.

Inactive Publication Date: 2013-07-17
NANKAI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, it is very challenging to design and construct such single-crystal conversion materials with special structures and properties, especially those with specific conversion conditions.

Method used

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  • Cobalt coordination polymer with reversible monocrystal-monocrystal transformation behavior
  • Cobalt coordination polymer with reversible monocrystal-monocrystal transformation behavior
  • Cobalt coordination polymer with reversible monocrystal-monocrystal transformation behavior

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Embodiment

[0022] A method for preparing a cobalt coordination polymer with reversible single crystal-single crystal conversion behavior, comprising the steps of:

[0023] 1) 50.4 mg (0.1 mmol) organic ligand 1,3,5-tris(p-imidazolephenyl)benzene (tipt), 27.0 mg (0.1 mmol) terephthalic acid (pta), 42.2 mg ( 0.15 mmol) of cobalt sulfate heptahydrate and 2 drops of pyridine were dissolved in 5 ml of N,N-dimethylformamide (DMF) solvent to obtain a mixed solution;

[0024] 2) Put the above mixed solution into a solvothermal reaction kettle and react at 160°C for 72 hours;

[0025] 3) After cooling down to 22°C naturally, wash twice with DMF and dry to obtain blue block single crystal Cobalt coordination polymers.

[0026] will be made Blue single crystal cobalt coordination polymer placed in saturated K 2 CO 3 In the hygrostat, after 7 days, the blue single crystal was completely transformed into a red single crystal cobalt coordination polymer [Co 1.5 (tipb)(SO 4 )(H 2 O) n ](pta)...

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Abstract

The invention discloses a cobalt coordination polymer with reversible monocrystal-monocrystal transformation behavior. The chemical formula of the cobalt coordination polymer is [Co1.5(tipb)(SO4)(acid)0.5](solvent), wherein tipb is ligand 1,3,5-tri(p-imidazole phenyl) benzene, acid is diacid, solvent refers to a solvent, and the preparation method comprises the following steps: adding the ligand, diacids and cobaltous sulfate in the anhydrous solvent, adding pyridine to adjust the pH value to alkalescence, obtaining bulk blue monocrystal through the solvothermal reaction, naturally cooling, washing and drying, wherein the blue monocrystal can be transformed into the cobalt coordination polymer red monocrystal under the action of water or ammonia. The cobalt coordination polymer disclosed by the invention has the advantages that the micropore cobalt coordination polymer material can be used for realizing the reversible transformation from one crystal to another crystal with the change of crystal color, aperture, dielectric and topological structure; and the material has potential application value in the material field such as sensing and absorption separation.

Description

technical field [0001] The metal-organic coordination polymer material involved in the invention is particularly a cobalt coordination polymer with reversible single crystal-single crystal conversion behavior. Background technique [0002] Reversible structural transformations that can respond to external stimuli have attracted widespread interest. Such materials have great application value in sensing, molecular capture, molecular devices and other related fields. In particular, materials with reversible single-crystal-to-single-crystal transformation behavior have attracted great attention, because people can easily study and design such materials from the molecular or even atomic level, see: 1) K.Takaoka, M. Kawano, M. Tominaga, M. Fujita, Angew. Chem. Int. Ed. 2005, 44, 2151-2154; 2) S. Kitagawa, K. Uemura, Chem. Soc. Rev. 2005, 34, 109-119; 3) K.Hanson, N.Calin, D.Bugaris, M.Scancella, S.C.Sevov, J.Am.Chem.Soc.2004, 126, 10502-10503; 4) E.Y.Lee, S.Y.Jang, M.P.Suh, J.A...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C07F15/06B01J20/22
Inventor 卜显和陈强常泽宋伟朝宋晗徐笑康庄占忠
Owner NANKAI UNIV
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