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通过催化生成的镁酰胺实现 3-取代噻吩的镍催化区域控制交叉偶联,简洁合成具有明确线性和支化结构的寡聚噻吩。

Concise synthesis of well-defined linear and branched oligothiophenes with nickel-catalyzed regiocontrolled cross-coupling of 3-substituted thiophenes by catalytically generated magnesium amide.

机构信息

Department of Chemical Science and Engineering, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan.

出版信息

Chemistry. 2013 Jan 28;19(5):1658-65. doi: 10.1002/chem.201203331. Epub 2012 Dec 19.

DOI:10.1002/chem.201203331
PMID:23255398
Abstract

The synthesis of linear and branched oligothiophenes of well-defined structures is performed with regioselective deprotonation of 3-substituted thiophenes and nickel-catalyzed cross-coupling of the thus formed metalated species with a bromothiophene. The reaction of 3-hexylthiophene with EtMgCl and 2,2,6,6-tetramethylpiperidine (TMP-H, 10 mol%) induces the metalation selectively at the 5-position by use of the catalytically generated hindered magnesium amide (TMPMgCl) and the subsequent reaction of a 2-halo-3-hexylthiophene (bromide or chloride) in the presence of a nickel catalyst affords a head-to-tail (HT)-type dimer. By repeating the same sequence, the linear oligothiophene up to a 4-mer is synthesized in good yield. The reaction of 3-hexylthiophene with 2,3-dibromothiophene also takes place to afford a branched oligothiophene 3-mer in quantitative yield. The obtained 3-mer is also metalated at the sterically less-hindered position in a regioselective manner furnishing a 7-mer in >99% yield after a further coupling reaction with 2,3-dibromothiophene. These dendrimers react with several multifunctionalized organic electrophiles, leading to a variety of branched oligothiophenes.

摘要

具有明确结构的直链和支化寡噻吩的合成是通过 3-取代噻吩的区域选择性脱质子化和由此形成的金属化物种与溴代噻吩的镍催化交叉偶联来进行的。使用催化生成的位阻镁酰胺(TMPMgCl)在 10 mol%的 2,2,6,6-四甲基哌啶(TMP-H)存在下选择性地在 5-位对 3-己基噻吩进行金属化,随后在镍催化剂存在下对 2-卤代-3-己基噻吩(溴化物或氯化物)进行反应,得到头对尾(HT)型二聚体。通过重复相同的序列,可以以良好的产率合成直链寡噻吩,直至 4 聚体。3-己基噻吩与 2,3-二溴噻吩的反应也以定量产率发生,得到支化寡噻吩 3 聚体。所得 3-聚体也以区域选择性方式在空间位阻较小的位置进行金属化,在与 2,3-二溴噻吩进一步偶联反应后,得到产率>99%的 7 聚体。这些树状大分子与几种多功能有机亲电试剂反应,生成多种支化寡噻吩。

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