Cooling/heating method and device based on metal-organic frameworks and induced by pressure modifications
US-2024336821-A1 · Oct 10, 2024 · US
US11976087B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11976087-B2 |
| Application number | US-202218026820-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 15, 2022 |
| Priority date | Dec 30, 2021 |
| Publication date | May 7, 2024 |
| Grant date | May 7, 2024 |
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The invention provides a light-stimuli responsive coordination polymer, and preparation method and use thereof. The coordination polymer has a chemical formula of [Zn(tkpvb) (Fb)2]n1, wherein Fb represents p-fluorobenzoate, tkpvb represents 1,2,4,5-tetrakis((E)-2-(4-pyridyl)vinyl)benzene, and n=3000-60000; and crystallographic parameters of: (1) crystal system: monoclinic system; (2) space group: C2/c; (3) a=28.577(3)Å, b=7.4084(6) Å, c=22.612(3) Å, β=126.771(2)°, and V=3834.8(7) Å3; (4) Z=4; and (5) F(000)=1720, R1=0.0440, wR2=0.1042, and GOF=1.047. The method is simple, and has mild reaction conditions, and fast light conversion rate. The means of light-stimuli responsiveness are non-contact and non-damage type, the volume adjustment is highly accurate, and the whole adjustment process does not require any chemical reagents, and is safe and reliable. Photoactuators can complete a variety of behaviors under the irradiation of ultraviolet light having a wavelength of 365 nm.
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What is claimed is: 1. A light-stimuli responsive coordination polymer, wherein the coordination polymer is a bright yellow bulk crystal and has a chemical formula of [Zn(tkpvb)(Fb) 2 ] n1 , crystallographic parameters of: (1) crystal system: monoclinic system; (2) space group: C2/c; (3) a=28.577(3) Å, b=7.4084(6) Å, c=22.612(3) Å, β=126.771(2)°, and V=3834.8(7) Å 3 ; (4) Z=4; and (5) F(000)=1720, R 1 =0.0440, wR 2 =0.1042, and GOF=1.047, wherein Fb represents p-fluorobenzoate, tkpvb represents 1,2,4,5-tetrakis((E)-2-(4-pyridyl)vinyl)benzene, and n1=3000-60000. 2. A method for preparing a light-stimuli responsive coordination polymer according to claim 1 , comprising steps of: dissolving zinc nitrate hexahydrate, p-fluorobenzoic acid or a water-soluble salt thereof, and 1,2,4,5-tetrakis((E)-2-(4-pyridyl)vinyl)benzene in a mixed solvent of N,N-dimethylformamide and water, adjusting the pH to 5-6, and reacting to obtain the light-stimuli responsive coordination polymer. 3. The preparation method according to claim 2 , wherein the molar ratio of zinc nitrate hexahydrate, p-fluorobenzoic acid or a water-soluble salt thereof and 1,2,4,5-tetrakis((E)-2-(4-pyridyl)vinyl)benzene is 1-2.5:1-2.5:1-2.5. 4. The preparation method according to claim 2 , wherein the reaction temperature is 120 to 125° C., and the time is 5-12 h. 5. A composite film, comprising a light-stimuli responsive coordination polymer according to claim 1 . 6. A method for preparing a composite film according to claim 5 , comprising steps of: S 1 : grinding the light-stimuli responsive coordination polymer, dispersing in a solvent, and drying; S 2 : adding a substrate, and stirring to obtain a uniform viscous liquid; S 3 : adding the uniform viscous liquid into a mold, drying, and peeling to obtain the composite film. 7. The method for preparing a composite film according to claim 6 , wherein the substrate is selected from the group consisting of PVA, chitosan, polyvinylidene difluoride, polypropylene and any combination thereof. 8. A photoactuator, prepared with a composite film according to claim 5 .
Zinc compounds · CPC title
Manufacture of films or sheets · CPC title
Complexes with metal-heteroatom-bonds · CPC title
Photosensitive actuators, e.g. using the principle of Crookes radiometer · CPC title
characterised by the material or the manufacturing process, e.g. the assembly · CPC title
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