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Mesoporous-silica films, fibers, and powders by evaporation

Patent ·
OSTI ID:1176708

This invention pertains to surfactant-templated nanometer-scale porosity of a silica precursor solution and forming a mesoporous material by first forming the silica precursor solution into a preform having a high surface area to volume ratio, then rapid drying or evaporating a solvent from the silica precursor solution. The mesoporous material may be in any geometric form, but is preferably in the form of a film, fiber, powder or combinations thereof. The rapid drying or evaporation of solvent from the solution is accomplished by layer thinning, for example spin casting, liquid drawing, and liquid spraying respectively. Production of a film is by layer thinning, wherein a layer of the silica precursor solution is formed on a surface followed by removal of an amount of the silica precursor solution and leaving a geometrically thinner layer of the silica precursor solution from which the solvent quickly escapes via evaporation. Layer thinning may be by any method including but not limited to squeegeeing and/or spin casting. In powder formation by spray drying, the same conditions of fast drying exists as in spin-casting (as well as in fiber spinning) because of the high surface-area to volume ratio of the product. When a powder is produced by liquid spraying, the particles or micro-bubbles within the powder are hollow spheres with walls composed of mesoporous silica. Mesoporous fiber formation starts with a similar silica precursor solution but with an added pre-polymer making a pituitous mixture that is drawn into a thin strand from which solvent is evaporated leaving the mesoporous fiber(s).

Research Organization:
Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC06-76RL01830
Assignee:
Battelle Memorial Institute (Richland, WA)
Patent Number(s):
RE40299
Application Number:
09/481,988
OSTI ID:
1176708
Country of Publication:
United States
Language:
English

References (17)

Continuous Mesoporous Silica Films with Highly Ordered Large Pore Structures journal November 1998
Free-standing and oriented mesoporous silica films grown at the air–water interface journal June 1996
Templating of Mesoporous Molecular Sieves by Nonionic Polyethylene Oxide Surfactants journal September 1995
Synthesis of a Stable Hexagonally Packed Mesoporous Niobium Oxide Molecular Sieve Through a Novel Ligand-Assisted Templating Mechanism journal March 1996
Organization of Organic Molecules with Inorganic Molecular Species into Nanocomposite Biphase Arrays journal August 1994
Formation of a Porous Zirconium Oxo Phosphate with a High Surface Area by a Surfactant-Assisted Synthesis journal March 1996
Synthesis of hybrid inorganic–organic mesoporous silica by co-condensation of siloxane and organosiloxane precursors journal January 1996
Cooperative organization of inorganic-surfactant and biomimetic assemblies journal February 1995
Synthesis of oriented films of mesoporous silica on mica journal February 1996
A Neutral Templating Route to Mesoporous Molecular Sieves journal February 1995
A new family of mesoporous molecular sieves prepared with liquid crystal templates journal December 1992
Synthesis and Characterization of Hexagonally Packed Mesoporous Tantalum Oxide Molecular Sieves journal January 1996
Mesoporous Silica Molecular Sieves Prepared by Ionic and Neutral Surfactant Templating:  A Comparison of Physical Properties journal January 1996
Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism journal October 1992
Recent advances in the synthesis, characterization and applications of mesoporous molecular sieves journal February 1996
A simple sol–gel route for the preparation of silica–surfactant mesostructured materials journal January 1996
Formation of Novel Oriented Transparent Films of Layered Silica-Surfactant Nanocomposites journal August 1994

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