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Catalytic Organic Molecular Imprints

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Title: Catalytic Organic Molecular Imprints


1
Catalytic Organic Molecular Imprints
David E. Hansen, Department of Chemistry, Amherst
College
The research funded by this PRF grant focuses on
new strategies for the generation of organic,
polymeric molecular imprints with improvedand
novelcatalytic activities. The technique of
molecular imprinting, which was pioneered by
Klaus Mosbach and Günther Wulff, works as
diagramed here
We are exploring molecular imprints with two
features intended to enhance the catalytic
activity of the imprints obtained One, each
imprint will employ a covalent or
stoichiometric-noncovalent bond between
functionalized monomer and template and two,
each will incorporate a nucleophile into the
catalytic mechanism. Covalent and
stoichiometric-noncovalent imprinting allow for
more precise positioning of the template (and
thus of the analogous substrate) within the
polymeric matrix, while direct participation of a
catalytic nucleophilic functionalitya
mechanistic feature that can lead to huge rate
accelerations in intramolecular model
systemsshould lead to enhanced rates. If our
approach does yield molecular-imprint catalysts
with enhanced activities, then a general,
inexpensive, and straightforward method for the
creation of active catalysts will be at hand.
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