Journal Article10.1038/359710A0
Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism
16K
TL;DR: In this paper, the synthesis of mesoporous inorganic solids from calcination of aluminosilicate gels in the presence of surfactants is described, in which the silicate material forms inorganic walls between ordered surfactant micelles.
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Abstract: MICROPOROUS and mesoporous inorganic solids (with pore diameters of ≤20 A and ∼20–500 A respectively)1 have found great utility as catalysts and sorption media because of their large internal surface area. Typical microporous materials are the crystalline framework solids, such as zeolites2, but the largest pore dimensions found so far are ∼10–12 A for some metallophosphates3–5 and ∼14 A for the mineral cacoxenite6. Examples of mesoporous solids include silicas7 and modified layered materials8–11, but these are invariably amorphous or paracrystalline, with pores that are irregularly spaced and broadly distributed in size8,12. Pore size can be controlled by intercalation of layered silicates with a surfactant species9,13, but the final product retains, in part, the layered nature of the precursor material. Here we report the synthesis of mesoporous solids from the calcination of aluminosilicate gels in the presence of surfactants. The material14,15 possesses regular arrays of uniform channels, the dimensions of which can be tailored (in the range 16 A to 100 A or more) through the choice of surfactant, auxiliary chemicals and reaction conditions. We propose that the formation of these materials takes place by means of a liquid-crystal 'templating' mechanism, in which the silicate material forms inorganic walls between ordered surfactant micelles.
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Citations
Periodic mesoporous organosilicas, PMOs: fusion of organic and inorganic chemistry ‘inside’ the channel walls of hexagonal mesoporous silica
TL;DR: In this paper, the synthesis and characterization of new periodic mesoporous organosilicas, PMOs, containing benzene and thiophene groups within the channel walls, is presented.
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Thin-Film Deposition of Organic−Inorganic Hybrid Materials
TL;DR: A review of recent results on organic-inorganic hybrid films can be found in this paper, with selected examples chosen from among the deposition of sol−gel materials, self-assembled hybrid, Langmuir−Blodgett films, and artificially layered materials.
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Preparation of Macroporous Metal Films from Colloidal Crystals
TL;DR: In this paper, a template-directed synthesis for the formation of macroporous metal films with interconnected spherical voids has been proposed, which can be used to produce mesoporous (voids 50 nm) and high void volume porous films.
385
Functionalized Polymers—Emerging Versatile Tools for Solution-Phase Chemistry and Automated Parallel Synthesis
TL;DR: It has been demonstrated that complex natural products like the alkaloids +/-)-oxomaritidine and (+/-)-epimaritidine can be prepared by a sequence of five and six consecutive polymer-assisted steps, respectively, and the potent analgesic compound (+/--epibatidine in twelve linear steps ten of which are based on functionalized polymers.
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Adsorption, Surface Area and Porosity
S. J. Gregg,Kenneth S. W. Sing,H. W. Salzberg +2 more
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10.9K
The preparation of alkyltrimethylammonium-kanemite complexes and their conversion to microporous materials.
TL;DR: In this article, single layered polysilicate kanemite (NaHSi2O5·3H2O) was allowed to react with alkyltrimethylammonium chloride solutions to form Alkyl-TRIMethylammium-kanemite complexes.
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