Restricted Rotation Involving the Tetrahedral Carbon. XXV. Barriers to Exchange betweendlandmesoForms of 9-(Arylmethyl)triptycenes
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/52/6/52_6_1682/_pdf
Reference10 articles.
1. Unusually High Barriers to Rotation Involving the Tetrahedral Carbon Atom
2. Restricted Rotation Involving the Tetrahedral Carbon. X. Barriers to Rotation of Methyl Groups in 9-Methyltriptycene Derivatives.
3. Restricted Rotation Involving the Tetrahedral Carbon. XVI. Isolation of Stable Rotamers about an sp3-sp3Carbon Bond
4. Restricted Rotation Involving the Tetrahedral Carbon. XI. Barriers to Rotation and Conformational Preferences of Substituted 9-Isopropyltriptycenes
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1. Recent Advances in Atropisomerism;Topics in Stereochemistry;2007-02-26
2. Rotamer Populations and Molecular Structure of 9-Isobutyl-1,4-dimethoxytriptycene: Further Evidence for the Presence of CH3···O Hydrogen Bond;Bulletin of the Chemical Society of Japan;1988-12
3. CH3···O Hydrogen Bond. Implications of Its Presence from the Substituent Effects on the Populations of Rotamers in 4-Substituted 9-Ethyl-1-methoxytriptycenes and 9-(Substituted Phenoxymethyl)-1,4-dimethyltriptycenes;Bulletin of the Chemical Society of Japan;1987-05
4. Restricted Rotation Involving the Tetrahedral Carbon. LVII. Stereodynamics of 9-(2-Alkylphenoxy)-1,4-dimethyltriptycenes;Bulletin of the Chemical Society of Japan;1985-07
5. Restricted Rotation Involving the Tetrahedral Carbon. LV. Differential Effects of theperi-Substituents on the Rotational Barriers in 9-Ethyl-, 9-Allyl-, and 9-Benzyltriptycenes;Bulletin of the Chemical Society of Japan;1984-08
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