Synthesis, structure and AM1 conformational study of 1,12-dioxa-2,11-dioxo[3.3]orthocyclophane
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Biochemistry
Reference12 articles.
1. Transannular brominolysis of 5,7,12,14-tetrahydrodibenzo [c,h][1,6] dithiecins by pyridinium hydrobromide perbromide
2. A study of the fluxional behavior in 2,11-dithia[3.3]orthocyclophane using molecular mechanics and dynamic NMR analysis
3. Structures of 2,11-dithia[3.3]orthocyclophane and its diselena analogue
4. Conformational analysis by the ring-current method. The structure of 2,2,12,12-tetramethyl[4.4]metacyclophane
5. 2,11-Dithia-[3.3](5,6)indano-orthocyclophane and 2,11-dithia-[3.3](5,6)indanocyclophane: synthesis, DNMR and X-ray structure analysis
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1. Metal‐Free Regioselective 1,6‐Conjugate Addition of Sulfide to para‐Quinone Methides: Simple Access to E‐Selective Thiaoxacyclophanes;ChemistrySelect;2023-09-07
2. Thiol‐Free E ‐Selective Approach to Dithiacyclophanes via Ring‐Closing Metathesis;Asian Journal of Organic Chemistry;2022-12-13
3. A facile and efficient route to one-pot synthesis of new cyclophanes using vinamidinium salts;RSC Advances;2021
4. Two-stage threecomponent synthesis of 6,11-diaza-1,5(2,5)-dioxazole- 3(1,2)-benzenecycloundecapha ne-14,54- dicarbonitrile;Reports of the National Academy of Sciences of Ukraine;2020
5. Selected synthetic strategies to cyclophanes;Beilstein Journal of Organic Chemistry;2015-07-29
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