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Development and Validation of Atomic Group Descriptors for Substituent Effects
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Substituent constants are often described with experimental proxies
based on a simplified substituent effect model. While good insights have
been derived from such proxies, the true properties of the substituent,
through which a more thorough understanding of the substituent effect
might be assessed, are not often investigated. Here, we have developed
an atomic graph descriptor model for substituent properties using the
Quantum Theory of Atoms in Molecules comprised of atomic, bond critical
point, and charge concentration properties. These descriptors are shown
to contain similar information to some traditionally used field and
resonance parameters. The use of such descriptors for studying the
substituent effect should provide greater insights into the true origin
of the effect substituents have on molecular systems.
Title: Development and Validation of Atomic Group Descriptors for Substituent Effects
Description:
Substituent constants are often described with experimental proxies
based on a simplified substituent effect model.
While good insights have
been derived from such proxies, the true properties of the substituent,
through which a more thorough understanding of the substituent effect
might be assessed, are not often investigated.
Here, we have developed
an atomic graph descriptor model for substituent properties using the
Quantum Theory of Atoms in Molecules comprised of atomic, bond critical
point, and charge concentration properties.
These descriptors are shown
to contain similar information to some traditionally used field and
resonance parameters.
The use of such descriptors for studying the
substituent effect should provide greater insights into the true origin
of the effect substituents have on molecular systems.
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