What we found on the web about Supramolecular
Supramolecular chemistry refers to the area of chemistry beyond the molecules and focuses on the chemical systems made up of a discrete number of assembled molecular subunits or ...
A supramolecular assembly or "supermolecule" is a well defined complex of molecules held together by noncovalent bonds. While a supramolecular assembly can be simply composed of ...
Supramolecular Chemistry and Nanotechnology ... Supramolecular chemistry is a relatively new field of chemistry which focuses quite literally on going "beyond" molecular chemistry.
supramolecular chemistry [‚sü·prə·mə‚lek·yə·lər ′kem·ə·strē] (chemistry) A highly interdisciplinary field covering the chemical, physical, and biological ...
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The Goal: The overall goal of the network is to bring together a number of research groups in the field of “Crystal Engineering” and “Supramolecular Solid State Chemistry”.
Supramolecular Polymers, Second Edition books - find the latest books, CD-ROMs and science and technical publications from over 50 life science publishers
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Supramolecular chemistry refers to the area of chemistry beyond the molecules and focuses on the chemical systems made up of a discrete number of assembled molecular subunits or components. The forces responsible for the spatial organization may vary from weak (intermolecular forces, electrostatic or hydrogen bonding) to strong (covalent bonding), provided that the degree of electronic coupling between the molecular component remains small with respect to relevant energy parameters of the component. While traditional chemistry focuses on the covalent bond, supramolecular chemistry examines the weaker and reversible noncovalent interactions between molecules. These forces include hydrogen bonding, metal coordination, hydrophobic forces, van der Waals forces, pi-pi interactions and electrostatic effects. Important concepts that have been demonstrated by supramolecular chemistry include molecular self-assembly, folding, molecular recognition, host-guest chemistry, mechanically-interlocked molecular architectures, and dynamic covalent chemistry. The study of non-covalent interactions is crucial to understanding many biological processes from cell structure to vision that rely on these forces for structure and function. Biological systems are often the inspiration for supramolecular research.

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