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Highly selective hydroiodination of carbon-carbon double or triple bonds

発表形態:
資料・解説・論説・研究報告・総合雑誌の論文
主要業績:
主要業績
単著・共著:
共著
発表年月:
2020年01月
DOI:
10.2174/1385272824666191227111257
会議属性:
指定なし
査読:
有り
リンク情報:

日本語フィールド

著者:
Yamamoto, Yuki; Kawaguchi, Shin Ichi; Kodama, Shintaro; Nomoto, Akihiro; Ogawa, Akiya
題名:
Highly selective hydroiodination of carbon-carbon double or triple bonds
発表情報:
Current Organic Chemistry 巻: 24 号: 18 ページ: 2153 - 2168
キーワード:
概要:
Iodine is an element that exhibits characteristic features of heavy halogen, and several compounds containing iodine constitute important synthetic intermediates due to synthetically easy manipulation. To utilize iodine units for organic synthesis, a highly re-gio-and stereoselective introduction of iodine to versatile building blocks is significant, and a lot of research works for the selective introduction of iodine to alkynes or alkenes have been conducted. In this review article, we describe regio-and stereoselective hy-droiodination to multiple bonds of building blocks, and its synthetic applications as key intermediates to construct several important compounds in organic chemistry.
抄録:

英語フィールド

Author:
Yamamoto, Yuki; Kawaguchi, Shin Ichi; Kodama, Shintaro; Nomoto, Akihiro; Ogawa, Akiya
Title:
Highly selective hydroiodination of carbon-carbon double or triple bonds
Announcement information:
Current Organic Chemistry Vol: 24 Issue: 18 Page: 2153 - 2168
An abstract:
Iodine is an element that exhibits characteristic features of heavy halogen, and several compounds containing iodine constitute important synthetic intermediates due to synthetically easy manipulation. To utilize iodine units for organic synthesis, a highly re-gio-and stereoselective introduction of iodine to versatile building blocks is significant, and a lot of research works for the selective introduction of iodine to alkynes or alkenes have been conducted. In this review article, we describe regio-and stereoselective hy-droiodination to multiple bonds of building blocks, and its synthetic applications as key intermediates to construct several important compounds in organic chemistry.


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