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Mesoporous metal-organic frameworks structures

Park YK, Choi SB, Kim H et al (2007) Crystal structure and guest uptake of a mesoporous metal-organic framework containing cages of 3.9 and 4.7 nm in diameter. Angew Chem Int Ed 46 8230-8233... [Pg.83]

The search for better catalysts has been facilitated in recent years by molecular modeling. We are seeing here a step change. This is the subject of Chapter 1 (Molecular Catalytic Kinetics Concepts). New types of catalysts appeared to be more selective and active than conventional ones. Tuned mesoporous catalysts, gold catalysts, and metal organic frameworks (MOFs) that are discussed in Chapter 2 (Hierarchical Porous Zeolites by Demetallation, 3 (Preparation of Nanosized Gold Catalysts and Oxidation at Room Temperature), and 4 (The Fascinating Structure... [Pg.389]

The first part of the book documents the history, structure, chemistry, formulation and characterizations of zeolites in Chapters 1-4. The past 60 years have seen a progression in molecular sieve materials from aluminosilicate zeolites to micro-porous silica polymorphs, microporous aluminophosphate-based polymorphs, metallosihcate and metallophosphate compositions, octahedral-tetrahedral frameworks, mesoporous molecular sieves and, most recently, hybrid metal organic frameworks (MOFs). [Pg.625]

Zhong RQ, Zou RQ, Xu Q. Microporous metal-organic framework Zinc(II) imidazole-4,5-dicarboxylate four-fold helical structure and strong fluorescent emission. Micropor Mesopor Mater 2007 102 122-7. [Pg.108]

There are now four major classes of materials in which organic components exert a significant structural role in controlling the inorganic oxide microstructure zeolites, mesoporous oxides of the MCM-41 class, biomineralized materials, and microporous octahedral-tetrahedral or square pyramidal-tetrahedral transition metal phosphate frameworks (TMPO) with entrained organic cations. ... [Pg.40]

The number of publications concerning utilization of the EISA process for fabrication of different structured materials is counted in the hundreds, which is far beyond the possibilities of this chapter to review in depth. Rather, we intend to provide a brief introduction into EISA and its application to the fabrication of functional thin films for electronic applications (e.g., electro-chromic layers and solar cells), with a special focus on fabrication of crystalline mesoporous films of metal oxides. Attention will also be given to techniques used to evaluate the pore structure of the thin films. For the other aspects of the EISA process, for example its mechanism,4 strategies for preparation of crystalline porous metal oxides,5 mesoporous nanohybrid materials,6 periodic organic silica materials,7,8 or postgrafting functionalization of mesoporous framework,9 we kindly recommend the reader to refer to the referenced comprehensive reviews. [Pg.284]


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See also in sourсe #XX -- [ Pg.40 , Pg.41 , Pg.42 , Pg.43 , Pg.44 , Pg.45 ]




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Crystalline structure mesoporous metal-organic frameworks

Framework structures

Frameworks, metal-organic,

Mesopore structure

Mesoporous metal-organic frameworks

Metal frameworks

Metal mesoporous

Organic Frameworks

Structural frameworks

Structural organization

Structure metal-organic frameworks

Structure organization

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