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Titlebook: Engineering of Crystalline Materials Properties; State of the Art in Juan J. Novoa,Dario Braga,Lia Addadi Conference proceedings 2008 Spri

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of inclusion compounds. In this article, case studies are presented to illustrate methods useful for the study of selectivity by host compounds towards particular guests and of the kinetics governing the formation and decomposition of inclusion compounds.
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https://doi.org/10.1007/978-3-642-54102-5 material from the convolution of the physical and chemical properties of the individual building blocks (whether molecules, ions, or metal atoms and ligands) with crystal periodicity and symmetry. Crystal engineering encompasses nowadays all traditional sectors of chemistry from organic to inorgani
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The Gentry in England and Wales, 1500-1700e materials needs of a precise design of the molecular building blocks, a control of the intermolecular interactions (hydrogen bonds, host/guest interactions, etc.) and a mastery in crystallization techniques in order to design crystal structures exhibiting useful physical properties. We will illust
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cal properties of substances. They affect the properties of materials as versatile as amphibole minerals, KDP-type (—OH⋯O= bonded) ferroelectrics or biopolymers (e.g. cellulose). While the classical examples of such materials usually concentrate on the —OH⋯O= bonds, recently analogical and completel
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