Functionalization of Cyclohexane Derivatives via Oxidative Radical Pathway

The straightforward functionalization of simple alkanes (simple alkanes refer particularly to cyclohexane derivatives) has been a challenging subject in modern chemistry. However, with the development of oxidative radical reaction, it provided an available and alternative approach to meet the requir...

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Published inChinese journal of chemistry Vol. 35; no. 3; pp. 289 - 298
Main Authors Teng, Fan, Cheng, Jiang
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag GmbH & Co. KGaA 01.03.2017
Wiley Subscription Services, Inc
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ISSN1001-604X
1614-7065
DOI10.1002/cjoc.201600538

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Abstract The straightforward functionalization of simple alkanes (simple alkanes refer particularly to cyclohexane derivatives) has been a challenging subject in modern chemistry. However, with the development of oxidative radical reaction, it provided an available and alternative approach to meet the requirement of activating these compounds. In the review, we summarized the recent advances in this field, and the review mainly contained the following four parts: (1) the formation of C—C bonds; (2) the formation of C—N bonds; (3) the formation of C—S bonds and (4) the formation of C—O bonds. The straightforward functionalization of simple alkanes (simple alkanes refer particularly to cyclohexane derivatives) has been a challenging subject in modern chemistry. However, with the development of oxidative radical reaction, it provided an available and alternative approach to meet the requirement of activating these compounds. In the review, we summarized the recent advances in the field, and the review mainly contained the following four parts: (1) the formation of C—C bonds; (2) the formation of C—N bonds; (3) the formation of C—S bonds and (4) the formation of C—O bonds.
AbstractList The straightforward functionalization of simple alkanes (simple alkanes refer particularly to cyclohexane derivatives) has been a challenging subject in modern chemistry. However, with the development of oxidative radical reaction, it provided an available and alternative approach to meet the requirement of activating these compounds. In the review, we summarized the recent advances in this field, and the review mainly contained the following four parts: (1) the formation of C--C bonds; (2) the formation of C--N bonds; (3) the formation of C--S bonds and (4) the formation of C--O bonds.
The straightforward functionalization of simple alkanes (simple alkanes refer particularly to cyclohexane derivatives) has been a challenging subject in modern chemistry. However, with the development of oxidative radical reaction, it provided an available and alternative approach to meet the requirement of activating these compounds. In the review, we summarized the recent advances in this field, and the review mainly contained the following four parts: (1) the formation of C—C bonds; (2) the formation of C—N bonds; (3) the formation of C—S bonds and (4) the formation of C—O bonds. The straightforward functionalization of simple alkanes (simple alkanes refer particularly to cyclohexane derivatives) has been a challenging subject in modern chemistry. However, with the development of oxidative radical reaction, it provided an available and alternative approach to meet the requirement of activating these compounds. In the review, we summarized the recent advances in the field, and the review mainly contained the following four parts: (1) the formation of C—C bonds; (2) the formation of C—N bonds; (3) the formation of C—S bonds and (4) the formation of C—O bonds.
Author Cheng, Jiang
Teng, Fan
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  fullname: Teng, Fan
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  email: jiangcheng@cczu.edu.cn
  organization: Changzhou University
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Snippet The straightforward functionalization of simple alkanes (simple alkanes refer particularly to cyclohexane derivatives) has been a challenging subject in modern...
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SubjectTerms alkylation
functionalization
oxidative radical pathway
simple alkanes
Title Functionalization of Cyclohexane Derivatives via Oxidative Radical Pathway
URI https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fcjoc.201600538
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