Claims
- 1. A mesostructured, microporous to mesoporous organofunctional silica composition wherein a framework for the composition is comprised of LSiO3 and SiO4 units linked through bridging Si—O—Si bonds, wherein L is an organofunctional group bonded to one silicon atom through a silicon-carbon covalent bond, wherein between above 20% to about 70% of the silicon atoms in the framework are LSiO3 units; wherein at least 80% of the silicon atoms in the LSiO3 units are crosslinked through bridging oxygen atoms to three other silicon atoms in the framework; and wherein the composition exhibits at least one x-ray diffraction line corresponding to a lattice spacing between about 1.8 nm and 10 nm.
- 2. The composition in claim 1 prepared through a direct assembly reaction of SiY4 and LSiY3 reagents in the presence of a non-ionic amine surfactant as a structure director for the framework and water as a hydrolyzing agent, wherein Y is a hydrolyzable alkoxide group bonded to the silicon and L is the organofunctional group.
- 3. The composition of claims 1 or 2 which have an anhydrous and dehydroxylated formula (SiO2)1-x(LSiO1.5)x wherein x has a value of between above 0.20 and about 0.70 and L is the organofunctional group.
- 4. The composition of any one of claims 1, 2 or 3 wherein the organofunctional group L is comprised of carbon-hydrogen covalent bonds.
- 5. The composition of any one of claims 1, 2 or 3 wherein the organofunctional group L is comprised of bonds between carbon and heteroatoms selected from the group comprising oxygen, nitrogen, sulfur, phosphorous, boron, fluorine, chlorine, bromine, iodine, antimony, arsenic, tin and lead.
- 6. A mesostructured, microporous to mesoporous organofunctional silica composition wherein a framework for the composition is comprised of O3Si—R—SO3 and SiO4 units linked through bridging Si—O—Si bonds; wherein R is an organic group bonded to two silicon atoms through silicon-carbon covalent bonds; wherein the composition exhibits at least one x-ray diffraction line corresponding to a lattice spacing of at least about 2 nm; and wherein the ratio of said units is between 99:1 and 1:99.
- 7. The composition of claim 6 prepared by a direct assembly reaction of Y3Si—R—SiY3 and SiY4 reagents in the presence of a non-ionic amine surfactant as a structure director for the framework and water as a hydrolyzing agent; wherein the reagents Y is a hydrolyzable alkoxide group bonded to silicon and R is the organofunctional group.
- 8. The composition of claims 6 or 7 which has an anhydrous and dehydroxylated formula (O1.5Si—R—SiO1.5)0.5x(SiO2)(1-x) wherein R is the organofunctional group and x has a value between 0.01 and 0.99.
- 9. The compositions of claims 6, 7 and 8 wherein the organic group R is selected from the group consisting of alkylene, phenylene, ferrocenylene, thiophenylene, acetylene and vinyl groups.
- 10. A mesostructured, microporous to mesoporous organofunctional silica composition wherein a framework for the composition is comprised of O3Si—R—SiO3 and LSiO3 units linked through bridging Si—O—Si bonds, wherein between 1% and 85% of the silicon atoms in the framework are LSiO3 units; wherein L is an organofunctional group linked to one silicon through a silicon-carbon covalent bond and R is an organic group linked to two silicon centers through two silicon-carbon covalent bonds; and wherein the composition exhibits at least one x-ray diffraction line corresponding to a lattice spacing between about 1.8 and 10 nm.
- 11. The composition in claim 10 prepared through the direct assembly reaction of Y3Si—R—SiY3 and LSiY3 reagents in the presence of a non-ionic amine surfactant as a structure directing agent for the framework and water as a hydrolyzing agent, wherein the Y is a hydrolyzable alkoxy group, L is the organofunctional group and R is the organic group.
- 12. The composition of claims 10 or 11 which have an anhydrous and dehydroxylated formula (O1.5Si—R—SiO1.5)0.5(1-x)(LSiO1.5)x wherein x has a value between 0.01 and about 0.85, L is the organofunctional group, and R is the organic group.
- 13. The compositions of any one of claims 10, 11 or 12 wherein the organofunctional group L is comprised of carbon-hydrogen covalent bonds.
- 14. The compositions of any one of claims 10, 11 and 12 wherein the organofunctional group L is comprised of bonds between carbon and heteroatoms selected from the group consisting of oxygen, nitrogen, sulfur, phosphorous, boron, fluorine, chlorine, bromine, iodine, antimony, arsenic, tin and lead.
- 15. The compositions of claims 10, 11 and 12 wherein the organic group R is selected from the group consisting of alkylene, phenylene, ferrocenylene, thiophenylene, acetylene, and vinyl groups.
- 16. The composition of any one of claims 1 and 10 in powdered, spherical particle or thin film form.
- 17. The composition of any one of claims 1 and 10 in which the organofunctional group L comprises covalent bonds between carbon and atoms selected from the group consisting of hydrogen, fluorine and combinations thereof.
- 18. The compositions of claim 17 when in the form of a low dielectric thin film coating on an electronic grade silicon substrate.
- 19. A microporous to mesoporous silica composition prepared by calcination at a temperature above 350° C. of a composition comprised of LSiO3 and SiO4 units linked through bridging Si—O—Si bonds, wherein L is an organofunctional group bonded to one silicon atom through a silicon-carbon covalent bond, wherein between above 20% to about 70% of the silicon atoms in the framework are LSiO3 units; wherein at least 80% of the silicon atoms in the LSiO3 units are crosslinked through bridging oxygen atoms to three other silicon atoms in the framework; and wherein the composition exhibits at least one x-ray diffraction line corresponding to a lattice spacing between about 1.8 nm and 10 nm so as to remove the organofunctional groups, wherein imprinted microporous cavities are present in the framework of the calcined silica.
- 20. The composition of claim 19 wherein the microporous volume is at least about 0.05 cc per gram.
- 21. A microporous to mesoporous silica composition prepared by calcination at temperatures above 350° C. of a composition wherein a framework for the sieve composition are comprised of O3Si—R—SiO3 and LSiO3 units linked through bridging Si—O—Si bonds, wherein between 1% and 85% of the silicon atoms in the framework are LSiO3 units; wherein L is an organofunctional group linked to one silicon through a silicon-carbon covalent bond and R is an organic group linked to two silicon centers through two silicon-carbon covalent bonds; and wherein the composition exhibits at least one x-ray diffraction line corresponding to a lattice spacing between about 1.8 and 10 nm so as to remove the organofunctional groups, wherein imprinted microporous cavities are present in the framework of the calcined silica.
- 22. The composition of claim 21 wherein the microporous volume is at least about 0.05 cc per gram.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0001] This invention described in this application was sponsored by NSF grant CHE-9903706. The U.S. Government has certain rights to this invention.