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Crystal Engineering and Organometallic Architecture.

Dario Braga, +2 more
- 14 May 1998 - 
- Vol. 98, Iss: 4, pp 1375-1406
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This article is published in Chemical Reviews.The article was published on 1998-05-14. It has received 1116 citations till now.

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A facile construction method for pH and oxidation dual-responsive assembly based on ferrocene-modified chitooligosaccharide

TL;DR: In this article, the self-organization of ferrocene-modified chitooligosaccharide (FcCOS) in an acid aqueous solution was used to construct snowflake-like assemblies that respond to external stimuli.
Journal ArticleDOI

Self-assembly of Pd(II) and Pt(II) complexes with 2,2′-bipyridine-3,3′-16-crown-4 containing porous channels through anion⋯π interactions

TL;DR: In this article, two complexes, [M(bpy-CE)(NO3)2] [M = Pd(II), Pt(II); bpyCE = 2,2′-bipyridine-3,3′-16-crown-4], were synthesized and characterized by the X-ray diffraction study, and their isomorphous crystal structures confirm the formation of interesting porous frameworks with channel diameters of ca. 6.0
Reference EntryDOI

Hydrogen Bonding & Dihydrogen Bonding

TL;DR: In this paper, the importance of hydrogen bonding in biology and biochemistry has been discussed and a relationship with hypervalency is proposed, in which the bridging proton of a FHF anion is considered as hypervalent hydrogen.
Journal ArticleDOI

Crystal structures of μ-oxalato-bis­[azido­(hista­mine)­copper(II)] and μ-oxalato-bis­[(dicyan­amido)(hista­mine)­copper(II)]

TL;DR: The title compounds are two closely related oxalate-bridged dinuclear copper complexes that are linked to form three-dimensional networks via different types of hydrogen-bond and weak interactions.
References
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The Protein Data Bank: a computer-based archival file for macromolecular structures.

TL;DR: The Protein Data Bank is a computer-based archival file for macromolecular structures that stores in a uniform format atomic co-ordinates and partial bond connectivities, as derived from crystallographic studies.
Journal ArticleDOI

Patterns in Hydrogen Bonding: Functionality and Graph Set Analysis in Crystals

TL;DR: In this article, a review of the most promising systematic approaches to resolving this enigma was initially developed by the late M. C. Etter, who applied graph theory to recognize, and then utilize, patterns of hydrogen bonding for the understanding and design of molecular crystals.
Journal ArticleDOI

Supramolecular Synthons in Crystal Engineering—A New Organic Synthesis

TL;DR: In this article, the authors show that crystal engineering is a new organic synthesis, and that rather than being only nominally relevant to organic chemistry, this subject is well within the mainstream, being surprisingly similar to traditional organic synthesis in concept.
Journal ArticleDOI

Perspectives in Supramolecular Chemistry—From Molecular Recognition towards Molecular Information Processing and Self‐Organization

TL;DR: In this article, the authors proposed a self-assembly approach for the generation of a well-defined supramolecular architecture by self-assembling from their components under a given set of conditions.
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