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Chemistry of Bridged Lactams: Recent Developments
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Bridged lactams represent the most effective and wide-ranging method of constraining the amide bond in a non-planar conformation. A previous comprehensive review on this topic was published in 2013 (Chem. Rev. 2013, 113, 5701–5765). In the present review, which is published as a part of the Special Issue on Amide Bond Activation, we present an overview of the recent developments in the field of bridged lactams that have taken place in the last five years and present a critical assessment of the current status of bridged lactams in synthetic and physical organic chemistry. This review covers the period from 2014 until the end of 2018 and is intended as an update to Chem. Rev. 2013, 113, 5701–5765. In addition to bridged lactams, the review covers recent advances in the chemistry of bridged sultams, bridged enamines and related non-planar structures.
Title: Chemistry of Bridged Lactams: Recent Developments
Description:
Bridged lactams represent the most effective and wide-ranging method of constraining the amide bond in a non-planar conformation.
A previous comprehensive review on this topic was published in 2013 (Chem.
Rev.
2013, 113, 5701–5765).
In the present review, which is published as a part of the Special Issue on Amide Bond Activation, we present an overview of the recent developments in the field of bridged lactams that have taken place in the last five years and present a critical assessment of the current status of bridged lactams in synthetic and physical organic chemistry.
This review covers the period from 2014 until the end of 2018 and is intended as an update to Chem.
Rev.
2013, 113, 5701–5765.
In addition to bridged lactams, the review covers recent advances in the chemistry of bridged sultams, bridged enamines and related non-planar structures.
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