Restricted Rotation Involving the Tetrahedral Carbon. LV. Differential Effects of theperi-Substituents on the Rotational Barriers in 9-Ethyl-, 9-Allyl-, and 9-Benzyltriptycenes
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/57/8/57_8_2219/_pdf
Reference15 articles.
1. Restricted Rotation Involving the Tetrahedral Carbon. LIV. The Effects of 1-Substituents on the Barriers to Rotation in 9-(2-Methyl-1-naphthyl)fluorenes
2. Restricted Rotation Involving the Tetrahedral Carbon. XXV. Barriers to Exchange betweendlandmesoForms of 9-(Arylmethyl)triptycenes
3. Nuclear Magnetic Resonance Study of Exchanging Systems. XI.13C NMR Spectra of 9-Ethyltriptycene Derivatives and the Restricted Rotation of the Ethyl Group
4. 8,13-Dichloro-1,4-dimethyl-9-(3,5-dimethylbenzyl)triptycene: Atropisomerism about a Csp3CH2 Bond
5. Restricted Rotation Involving the Tetrahedral Carbon. XXXV. Stereodynamics of 9-(3,5-Dimethylbenzyl)triptycene Derivatives
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1. Synthesis of 1,8,13-Substituted Triptycenes;Chemistry Letters;2021-01-05
2. Synthesis and Stereochemistry ofN-Phenyl-N-9-triptycylhydroxylamine Derivatives and Related Compounds;Bulletin of the Chemical Society of Japan;2004-12
3. Restricted Rotation Involving the Tetrahedral Carbon. LXIV. Barriers to Rotation ofs-Alkyl Groups in 9-s-Alkyl-8,13-difluoro-1,4-dimethyl- and 1,2,3,4-tetrachloro-triptycenes;Bulletin of the Chemical Society of Japan;2001-02
4. Restricted Rotation Involving the Tetrahedral Carbon. LXIII. Endeavor toward Enhancing the Rotational Barrier in 9-s-Alkyltriptycenes;Bulletin of the Chemical Society of Japan;1996-11
5. The CH/π interaction: Significance in molecular recognition;Tetrahedron;1995-08
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