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The Macromolecular Route to Chiral Amplification

Cooperative phenomena, described by one‐dimensional statistical physical methods, are observed between the enantiomeric characteristics of monomeric materials and the polymers they produce. The effect of minute energies associated with this amplified chirality, although currently not interpretable,...

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Published in:Angewandte Chemie International Edition 1999-11, Vol.38 (21), p.3138-3154
Main Authors: Green, Mark M., Park, Ji-Woong, Sato, Takahiro, Teramoto, Akio, Lifson, Shneior, Selinger, Robin L. B., Selinger, Jonathan V.
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container_issue 21
container_start_page 3138
container_title Angewandte Chemie International Edition
container_volume 38
creator Green, Mark M.
Park, Ji-Woong
Sato, Takahiro
Teramoto, Akio
Lifson, Shneior
Selinger, Robin L. B.
Selinger, Jonathan V.
description Cooperative phenomena, described by one‐dimensional statistical physical methods, are observed between the enantiomeric characteristics of monomeric materials and the polymers they produce. The effect of minute energies associated with this amplified chirality, although currently not interpretable, can be easily measured. Nonlinear relationships between enantiomeric excess or enantiomeric content and polymer properties may offer the possibility of developing chiral catalysts and chiral chromatographic materials in which the burden of large enantiomeric excess or content may be considerably alleviated. New approaches to information and sensor technology may become possible.
doi_str_mv 10.1002/(SICI)1521-3773(19991102)38:21<3138::AID-ANIE3138>3.0.CO;2-C
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subjects Amplification
Asymmetric amplification
Catalysis
Catalysts
Chirality
Chromatography
Helical structures
Nonlinearity
Polymers
Production methods
Sensors
title The Macromolecular Route to Chiral Amplification
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