Crosslinking agent, crosslinked polymer, and compound
US-9809697-B2 · Nov 7, 2017 · US
US9944767B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9944767-B2 |
| Application number | US-201615275850-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 26, 2016 |
| Priority date | Mar 27, 2014 |
| Publication date | Apr 17, 2018 |
| Grant date | Apr 17, 2018 |
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The organic-inorganic composite of the present invention includes an organic compound having a carbonyl group, an inorganic compound containing a metal component, and a silver component. The ratio of the number of metal atoms in the inorganic compound to the number of carbon atoms in the organic compound is from 0.04 to 1.60, and the ratio of the number of silver atoms in the silver component to the number of carbon atoms in the organic compound is from 0.07 to 0.55. The organic-inorganic composite may include, for example, an inorganic compound having a metal matrix structure containing a metal M and oxygen, an organic compound having a carbonyl group, and silver ions. The carbonyl group is bonded to a side chain R 1 of the organic compound and has an end group R 2 .
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What is claimed is: 1. An organic-inorganic composite comprising: a polymer having a carbonyl group, an inorganic compound having a metal matrix structure containing oxygen, and a silver component, wherein the ratio of the number of metal atoms in the inorganic compound to the number of carbon atoms in the polymer is from 0.04 to 1.60, and the ratio of the number of silver atoms in the silver component to the number of carbon atom in the polymer is from 0.07 to 0.55, and wherein a separation performance indicating the function of olefin/paraffin separation is 20 or more. 2. The organic-inorganic composite according to claim 1 , wherein the inorganic compound contains at least one metal atom selected from the group consisting of Si, Ti, Al, and Zr. 3. The organic-inorganic composite according to claim 1 , wherein the inorganic compound is a hydrolysate of a metal alkoxide. 4. The organic-inorganic composite according to claim 1 , wherein the polymer includes a carbon structure in which carbon atoms are bonded and the carbonyl group bonded to the carbon structure. 5. The organic-inorganic composite according to claim 1 , wherein the organic-inorganic composite has the function of selectively allowing a specific component contained in a fluid composed of plural components to pass through. 6. A structural body comprising: a substrate and the organic-inorganic composite according to claim 1 , being formed on the substrate. 7. A method for producing an organic-inorganic composite that includes an inorganic compound, an organic compound, and a silver component, the method comprising a hybridization step of obtaining the organic-inorganic composite by using, as a raw material of the organic compound, a polymer having a carbonyl group, using, as a raw material of the inorganic compound, a material containing a metal compound containing oxygen, and using a raw material of the silver component, wherein steps after the silver component is added are performed at a temperature of 100° C. or lower to form said organic-inorganic composite wherein the ratio of the number of metal atoms in the inorganic compound to the number of carbon atoms in the polymer is from 0.04 to 1.60, and the ratio of the number of silver atoms in the silver component to the number of carbon atoms in the polymer is from 0.07 to 0.55, and wherein a separation performance indicating the function of olefin/paraffin separation is 20 or more. 8. The method for producing an organic-inorganic composite according to claim 7 , wherein, in the hybridization step, a compound containing at least one metal atom selected from the group consisting of Si, Ti, Al, and Zr is used as the raw material of the inorganic compound. 9. The method for producing an organic-inorganic composite according to claim 7 , wherein, in the hybridization step, a metal alkoxide is used as the raw material of the inorganic compound, and the metal alkoxide is hydrolyzed in a solution containing the metal alkoxide and the polymer to thereby hybridize the inorganic compound with the polymer. 10. The method for producing an organic-inorganic composite according to claim 9 , wherein, in the hybridization step, the silver component is added after the hydrolysis. 11. The method for producing an organic-inorganic composite according to claim 7 , wherein, in the hybridization step, heat treatment is performed after the inorganic compound and the polymer are hybridized, and then the silver component is added.
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