Claims
- 1. A porous material comprising a plurality of single layer SiO.sub.4 tetrahedra sheets having interlayer bridges of SiO.sub.2 between adjacent single layer SiO.sub.4 tetrahedra sheets formed by condensation of silanol groups with elimination of water, said material having a multiplicity of pores with a diameter of at least about 20 .ANG., said pores being substantially uniform in diameter, the single layer SiO.sub.4 tetrahedra sheets having bent portions, said bent portions of adjacent single layer SiO.sub.4 tetrahedra sheets being partly bonded to each other to form said interlayer bridges and a porous structure having a generally honeycomb cross-section defined by the adjacent single layer SiO.sub.4 tetrahedra sheets bounded by said interlayer bridges, said porous material possessing properties of a solid acid produced by the isomorphous substitution of metal atoms selected from the group consisting of aluminum, zirconium, gallium, beryllium, magnesium, yttrium, lanthanum, tin, lead and combinations thereof for a portion of the Si atoms of the SiO.sub.2 bridges.
- 2. A porous material as set forth in claim 1, wherein said pores have a diameter of about 20 .ANG. to about 40 .ANG..
- 3. A porous material as set forth in claim 1, wherein said pores have a diameter of substantially at least 26 .ANG..
- 4. A porous material formed with a plurality of single layer SiO.sub.4 tetrahedra sheets having interlayer bridges of SiO.sub.2 between adjacent single layer SiO.sub.4 tetrahedra sheets, formed by a process comprising the steps of:
- (a) introducing at least one organic substance having a molecular size of at least 20 .ANG. by ion exchange into an interlayer space of crystals of layered silicates, and forming interlayer bridges of SiO.sub.2 between adjacent single layer SiO.sub.4 tetrahedra sheets by condensation of surface silanols;
- (b) bringing said crystals into contact with a salt of a metal other than silicon; and
- (c) firing said crystals at a high temperature;
- the steps being carried out in the order of either (a), (b) and (c); (b), (a) and (c); (a) and (b) at the same time and (c); or (a), (c), (b) and (c);
- the above said steps of the process being performed to yield a porous material having a multiplicity of pores with a diameter of at least about 20 .ANG., said pores being substantially uniform in diameter, the single layer SiO.sub.4 tetrahedra sheets having bent portions, said bent portions of adjacent single layer SiO.sub.4 tetrahedra sheets being partly bonded to each other to form said interlayer bridges and a porous structure having a generally honeycomb cross-section defined by the adjacent single layer SiO.sub.4 tetrahedra sheets bounded by said interlayer bridges, said porous material possessing properties of a solid acid produced by the isomorphous substitution of metal atoms selected from the group consisting of aluminum, zirconium, gallium, beryllium, magnesium, yttrium, lanthanum, tin, lead and combinations thereof for a portion of the Si atoms of the SiO.sub.2 bridges.
- 5. The porous material of claim 4, wherein said pores have a diameter of substantially at least 26 .ANG..
- 6. The porous material of claim 4, wherein said ion exchange is carried out by exchanging cations of said organic substance for sodium ions existing between said layers.
- 7. The porous material of claim 6, wherein said cations are organic onium ions.
- 8. The porous material of claim 7, wherein said organic onium ions are alkylammonium ions.
- 9. The porous material of claim 6, wherein said cations are of a single organic substance.
- 10. The porous material of claim 6, wherein said cations are of a plurality, of different organic substances having different molecular sizes or weights.
- 11. The porous material of claim 4, wherein said step (a) is carried out at a temperature of about 65.degree. C. and for a period of about a week.
- 12. The porous material of claim 4, wherein said step (b) is carried out by dipping said crystals in a solution of said salt.
- 13. The porous material of claim 4, wherein said step (b) is carried out by mixing a powder of said crystals with a powder of said salt.
- 14. The porous material of claim 4, wherein said step (c) is carried out at a temperature of 500.degree. C. to 800.degree. C. and for a period of several hours.
- 15. The porous material of claim 4, wherein said step (c) is carried out in an atmosphere containing added oxygen, or ozone.
Priority Claims (1)
Number |
Date |
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3-014702 |
Jan 1991 |
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Parent Case Info
This is a continuation of application Ser. No. 07/820,167 filed Jan. 13, 1992 for POROUS MATERIAL COMPOSED OF LAYERED SILICA AND METAL OXIDE AND A PROCESS FOR MANUFACTURING THE SAME, now abandoned.
US Referenced Citations (10)
Continuations (1)
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820167 |
Jan 1992 |
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