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Method for synthesizing mesoporous crystalline material using acid

TLDR
In this paper, a method for synthesizing an ultra-large pore crystalline material which can be used as a sorbent or catalyst component for conversion of organic and inorganic compound is improved through the addition of a strong acid to the reaction mixture.
Abstract
A method for synthesizing an ultra-large pore crystalline material which can be used as a sorbent or catalyst component for conversion of organic and inorganic compound is improved through the addition of a strong acid to the reaction mixture.

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Patent

Synthetic mesoporous crystaline material

TL;DR: In this article, a new synthetic composition of ultra-large pore crystalline material and use thereof as sorbent and in catalytic conversion of organic and inorganic compounds was proposed.
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Mesoporous-silica films, fibers, and powders by evaporation

TL;DR: In this article, the authors proposed a method for surfactant-templated nanometer-scale porosity of a silica 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 evaporation of solvent from the mixture.
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TL;DR: In this paper, a mesoporous silica film with a low dielectric constant and a method of making having the steps of combining a surfactant in a silica precursor solution.
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TL;DR: In this paper, a method for synthesizing a new synthetic composition of ultra-large pore crystalline material which can be used as a sorbent or catalyst component for conversion of organic and inorganic compounds is described.
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Ink receptor media suitable for inkjet printing

TL;DR: The ink receptor media of the invention comprises an ink receptor comprising surfactant templated mesoporous particles dispersed within an organic binder on the substrate as discussed by the authors, which may also have an ink fixing material within or on the ink receptor.