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Making And Breaking Symmetry In Chemistry: Syntheses, Mechanisms And Molecular Rearrangements (Hardcover)
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Making And Breaking Symmetry In Chemistry: Syntheses, Mechanisms And Molecular Rearrangements (Hardcover)
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The elucidation of reaction mechanisms generally requires the
carefully designed control of molecular symmetry to distinguish
between the many possible reaction pathways. Making and Breaking
Symmetry in Chemistry emphasises the crucial role played by
symmetry in modern synthetic chemistry. After discussion of a
number of famous classical experiments, the advances brought about
by the introduction of new techniques, in particular NMR
spectroscopy, are exemplified in numerous cases taken from the
recent literature. Experimental verification of many of the
predictions made in Woodward and Hoffmann's explication of the
Conservation of Orbital Symmetry are described. Applications that
involve the breaking of molecular symmetry to resolve these and
other mechanistic problems in organic, inorganic and organometallic
chemistry are presented in the first sections of the book, together
with many examples of the detection of hitherto hidden
rearrangement processes.Subsequently, under the aegis of making
molecular symmetry, examples of the preparation of highly
symmetrical molecules found in the organic, organometallic or
inorganic domains are discussed. These include Platonic
hydrocarbons or boranes, tetrahedranes, cubanes, prismanes,
dodecahedrane, fullerene fragments such as corannulene, sumanene or
semibuckminsterfullerene, and other systems of unusual geometries
or bonding characteristics (Moebius strips, molecular brakes and
gears, Chauvin's carbomers, Fitjer's rotanes, persubstituted rings,
metal-metal multiple bonds, etc.). The text also contains vignettes
of many of the scientists who made these major advances, as well as
short sections that briefly summarise key features of important
topics that underpin the more descriptive material. These include
some aspects of chirality, NMR spectroscopy, and the use of
isotopic substitution to break molecular symmetry. A brief appendix
on point group symmetry and nomenclature is also helpfully
provided.
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