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Ipso-Type Regiocontrolled Benzannulation for the Synthesis of Uniquely Substituted α-Arylnaphthalenes: Application to the First Total Synthesis of Chaihunaphthone

[Image: see text] A distinctive method for synthesizing a variety of multisubstituted α-arylnaphthalenes utilizing novel regiocontrolled ipso-type [4 + 2] benzannulation is presented. Ortho- and para-substituted 1-Ar(1)-1-Ar(2)-2,2-dichlorocyclopropylmethanols (AACM) were transformed to the correspo...

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Autores principales: Moriguchi, Kento, Sasaki, Ryosuke, Morita, Jun-ichi, Kamakura, Yoshinobu, Tanaka, Daisuke, Tanabe, Yoo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8296562/
https://www.ncbi.nlm.nih.gov/pubmed/34308046
http://dx.doi.org/10.1021/acsomega.1c02000
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author Moriguchi, Kento
Sasaki, Ryosuke
Morita, Jun-ichi
Kamakura, Yoshinobu
Tanaka, Daisuke
Tanabe, Yoo
author_facet Moriguchi, Kento
Sasaki, Ryosuke
Morita, Jun-ichi
Kamakura, Yoshinobu
Tanaka, Daisuke
Tanabe, Yoo
author_sort Moriguchi, Kento
collection PubMed
description [Image: see text] A distinctive method for synthesizing a variety of multisubstituted α-arylnaphthalenes utilizing novel regiocontrolled ipso-type [4 + 2] benzannulation is presented. Ortho- and para-substituted 1-Ar(1)-1-Ar(2)-2,2-dichlorocyclopropylmethanols (AACM) were transformed to the corresponding ipso-type α-arylnaphthalenes. (i) The reaction of ortho-AACM using TiCl(4) or SnCl(4) (1.0 equiv) proceeded smoothly to afford ipso-type α-arylnaphthalenes (seven examples; 49–69% yield) exclusively, without producing conventional benzannulation isomers. (ii) Para-AACM also underwent the reaction successfully to afford the desired ipso-type α-arylnaphthalenes (14 examples; 39–98% yield) without producing conventional benzannulation isomers. (iii) In contrast, meta-AACM underwent the previously reported conventional benzannulation. (iv) The present method exhibited sufficient substrate generality for application to ortho- and para-substituted AACM substrates bearing Me-, Cl-, and MeO- groups. (v) The six key structures were unambiguously confirmed by X-ray structure analyses. (vi) A plausible reaction mechanism for the present ipso-type reaction is proposed and supported by three careful cross-over and comparable experiments. To demonstrate the utility of the present reaction, we achieved the first total synthesis of chaihunaphthone, a uniquely (highly congested) substituted and less accessible natural lignan lactone with three contiguous trimethoxy substituents (total eight steps, overall 6.4% yield).
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spelling pubmed-82965622021-07-23 Ipso-Type Regiocontrolled Benzannulation for the Synthesis of Uniquely Substituted α-Arylnaphthalenes: Application to the First Total Synthesis of Chaihunaphthone Moriguchi, Kento Sasaki, Ryosuke Morita, Jun-ichi Kamakura, Yoshinobu Tanaka, Daisuke Tanabe, Yoo ACS Omega [Image: see text] A distinctive method for synthesizing a variety of multisubstituted α-arylnaphthalenes utilizing novel regiocontrolled ipso-type [4 + 2] benzannulation is presented. Ortho- and para-substituted 1-Ar(1)-1-Ar(2)-2,2-dichlorocyclopropylmethanols (AACM) were transformed to the corresponding ipso-type α-arylnaphthalenes. (i) The reaction of ortho-AACM using TiCl(4) or SnCl(4) (1.0 equiv) proceeded smoothly to afford ipso-type α-arylnaphthalenes (seven examples; 49–69% yield) exclusively, without producing conventional benzannulation isomers. (ii) Para-AACM also underwent the reaction successfully to afford the desired ipso-type α-arylnaphthalenes (14 examples; 39–98% yield) without producing conventional benzannulation isomers. (iii) In contrast, meta-AACM underwent the previously reported conventional benzannulation. (iv) The present method exhibited sufficient substrate generality for application to ortho- and para-substituted AACM substrates bearing Me-, Cl-, and MeO- groups. (v) The six key structures were unambiguously confirmed by X-ray structure analyses. (vi) A plausible reaction mechanism for the present ipso-type reaction is proposed and supported by three careful cross-over and comparable experiments. To demonstrate the utility of the present reaction, we achieved the first total synthesis of chaihunaphthone, a uniquely (highly congested) substituted and less accessible natural lignan lactone with three contiguous trimethoxy substituents (total eight steps, overall 6.4% yield). American Chemical Society 2021-07-09 /pmc/articles/PMC8296562/ /pubmed/34308046 http://dx.doi.org/10.1021/acsomega.1c02000 Text en © 2021 The Authors. Published by American Chemical Society Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Moriguchi, Kento
Sasaki, Ryosuke
Morita, Jun-ichi
Kamakura, Yoshinobu
Tanaka, Daisuke
Tanabe, Yoo
Ipso-Type Regiocontrolled Benzannulation for the Synthesis of Uniquely Substituted α-Arylnaphthalenes: Application to the First Total Synthesis of Chaihunaphthone
title Ipso-Type Regiocontrolled Benzannulation for the Synthesis of Uniquely Substituted α-Arylnaphthalenes: Application to the First Total Synthesis of Chaihunaphthone
title_full Ipso-Type Regiocontrolled Benzannulation for the Synthesis of Uniquely Substituted α-Arylnaphthalenes: Application to the First Total Synthesis of Chaihunaphthone
title_fullStr Ipso-Type Regiocontrolled Benzannulation for the Synthesis of Uniquely Substituted α-Arylnaphthalenes: Application to the First Total Synthesis of Chaihunaphthone
title_full_unstemmed Ipso-Type Regiocontrolled Benzannulation for the Synthesis of Uniquely Substituted α-Arylnaphthalenes: Application to the First Total Synthesis of Chaihunaphthone
title_short Ipso-Type Regiocontrolled Benzannulation for the Synthesis of Uniquely Substituted α-Arylnaphthalenes: Application to the First Total Synthesis of Chaihunaphthone
title_sort ipso-type regiocontrolled benzannulation for the synthesis of uniquely substituted α-arylnaphthalenes: application to the first total synthesis of chaihunaphthone
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8296562/
https://www.ncbi.nlm.nih.gov/pubmed/34308046
http://dx.doi.org/10.1021/acsomega.1c02000
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