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Modular Chemistry:  Secondary Building Units as a Basis for the Design of Highly Porous and Robust Metal−Organic Carboxylate Frameworks

Accounts of Chemical Research · 2001 · Vol. 34(4) · pp. 319–330
Mohamed EddaoudiDavid B. MolerHailian LiBanglin ChenTheresa M. ReinekeM. O’KeeffeOmar M. Yaghi

Abstract

Secondary building units (SBUs) are molecular complexes and cluster entities in which ligand coordination modes and metal coordination environments can be utilized in the transformation of these fragments into extended porous networks using polytopic linkers (1,4-benzenedicarboxylate, 1,3,5,7-adamantanetetracarboxylate, etc.). Consideration of the geometric and chemical attributes of the SBUs and linkers leads to prediction of the framework topology, and in turn to the design and synthesis of a new class of porous materials with robust structures and high porosity.

Metal-Organic Frameworks: Synthesis and ApplicationsMagnetism in coordination complexesPolyoxometalates: Synthesis and ApplicationsSBusPorosityModular designLigand (biochemistry)CarboxylateMetal-organic frameworkTopology (electrical circuits)Class (philosophy)Transformation (genetics)Basis (linear algebra)

MeSH terms

Carboxylic AcidsCrystallizationMolecular StructureZeolites
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References
Interpenetrating Nets: Ordered, Periodic Entanglement
Angewandte Chemie International Edition · 1998 · 4,320 citations
Inorganic crystal engineering using self-assembly of tailored building-blocks
Coordination Chemistry Reviews · 1999 · 1,693 citations
Functional Micropore Chemistry of Crystalline Metal Complex-Assembled Compounds
Bulletin of the Chemical Society of Japan · 1998 · 834 citations
Open-Framework Inorganic Materials
Angewandte Chemie International Edition · 1999 · 2,384 citations
Frameworks for Extended Solids: Geometrical Design Principles
Journal of Solid State Chemistry · 2000 · 896 citations
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Modular Chemistry:  Secondary Building Units as a Basis for the Design of Highly Porous and Robust Metal−Organic Carboxylate Frameworks · Scinovex