Crystal Engineering: From Molecules and Crystals to by L. Addadi, J. Aizenberg, E. Beniash (auth.), Dario Braga,

By L. Addadi, J. Aizenberg, E. Beniash (auth.), Dario Braga, Fabrizia Grepioni, A. Guy Orpen (eds.)

Crystal engineering is an interdisciplinary sector that cuts around the conventional subdivisions of chemistry. Fuelled via our more and more special knowing of the chemistry and houses of supramolecular structures, curiosity within the capability of the sector has elevated swiftly.
the themes mentioned within the 28 contributions during this ebook offer a state of the art description of the sphere and supply new examine rules that, if pursued, will serve to reinforce the sphere on the interface among supramolecular chemistry and fabrics science.

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Kitaigorodskii, AI. (1961) Organic Chemical Crystallography, Consultants Bureau, NY, p. 67. Dahl, T. (1994) The Nature of Stacking Interactions between Organic Molecules Elucidated by Analysis of Crystal Structures, Acta Chem. Scand 48,95-106. K. and Rogers, RD. (1998) CH---X (X=N,O) Hydrogen BondMediated Assembly of Donors and Acceptors: The Crystal Structures of Phenazine Complexes with 1,4-Dinitrobenzene and TCNQ, Crystal Engineering 1,139-145. M. (1998) The Structure of Several Supramolecular Meso-Tetraaryl porphinatomanganese(III) Tetracyanoethanide Magnets, Crystal Engineering 1,97-107.

B) O. Kahn, Molecular Magnetisrn, VCH Publishers, Inc. 1993. (c) D. Gatteschi, Adv. Mat. 1994,6, 635. (d) M. Kinoshita, lap. l. Appl. Phys. 1994, 33, 5718. (e) A. L. Buchachenko, Russ. Chern. Rev. 1990, 59, 307. (f) J. S. Miller, A. J. Epstein, Chern. & Engg. News, 1995, 73#40, 30 . P. Zhou, B. G. Morin, J. S. Miller, A. J. Epstein, Phys. Rev. B 1993, 48, l325. J. S. Miller, Adv. Mater. 1998,10, 1553. e. , J. S. Miller, A. J. Epstein,l. Chern. , Chern. Cornrnun. 1998, l319. FUESS Department of Materials Science Darmstadt University of Technology PetersenstraBe 23 64287 Darmstadt/Germany Abstract The basis for modelling crystals is the enormous wealth of crystal structures determined by diffraction methods.

S. Miller, A. J. Epstein, Phys. Rev. B 1993, 48, l325. J. S. Miller, Adv. Mater. 1998,10, 1553. e. , J. S. Miller, A. J. Epstein,l. Chern. , Chern. Cornrnun. 1998, l319. FUESS Department of Materials Science Darmstadt University of Technology PetersenstraBe 23 64287 Darmstadt/Germany Abstract The basis for modelling crystals is the enormous wealth of crystal structures determined by diffraction methods. Neutron diffraction has added complementary precision to structural data and inelastic neutron scattering gives valuable information on interatomic and intermolecular forces.

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