Crystal engineers aim to control the way molecules aggregate in the
crystalline phase and are therefore concerned with crystal
structure prediction, polymorphism, and discovering the relative
importance of different types of intermolecular forces and their
influence on molecular structure. In order to design crystal
structures, knowledge of the types, strengths, and nature of
possible intermolecular interactions is essential. Non-covalent
interactions involving p-systems is a theme that is under extensive
investigation as these interactions can be inductors for the
assembly of a vast array of supramolecular architectures.
"The Importance of Pi-Interactions in Crystal Engineering"covers
topics ranging from the identification of interactions involving
p-systems, their impact on molecular and crystal structure in both
organic and metallorganic systems, and how these interactions might
be exploited in the design of new materials. Specialist reviews are
written by internationally recognized researchers drawn from both
academia and industry.
"The Importance of" Pi-"Interactions in Crystal
Engineering"provides an essential overview of this important aspect
of crystal engineering for both entrants to the field as well as
established practitioners, and for those working in
crystallography, medicinal and pharmaceutical sciences, solid-state
chemistry, physical chemistry, materials and nanotechnology
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