首页> 外文期刊>Organometallics >A Comparison of Two Zinc Hydride Catalysts for Terminal Alkyne C-H Borylation/Hydroboration and the Formation of 1,1,1-Triborylalkanes by Tandem Catalysis Using Zn-H and B-H Compounds
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A Comparison of Two Zinc Hydride Catalysts for Terminal Alkyne C-H Borylation/Hydroboration and the Formation of 1,1,1-Triborylalkanes by Tandem Catalysis Using Zn-H and B-H Compounds

机译:使用Zn-H和B-H化合物串联催化剂末端炔烃C-H促rorylation /氢化物锌氢化物催化剂的比较及1,1,1-甲基烷烃

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摘要

The synthesis of 1,1,1-triborylalkanes from terminal alkynes and pinacolborane (HBPin) is reported. This transformation proceeds via initial Zn-catalyzed alkyne C-H borylation, which can be achieved using a NacNacZnH complex. Combinations of a NacNacZn-alkynyl formed via C-H zincation of a terminal alkyne and HBPin exist in equilibrium with the alkynyl-BPin and NacNacZnH. The consumption of NacNacZnH by irreversible reaction with a terminal alkyne evolving H-2 is essential for driving alkyne C-H borylation to completion. The alkynyl-BPin compounds undergo hydroboration catalyzed by Zn-H complexes at raised temperatures with a {7DIPP}ZnH(NTf2) complex (7DIPP = 1,3-bis(2,6-diisopropylpheny1)-4,5,6,7-tetrahydro-1H-1,3-diazepin-3-ium-2-ide) a more active catalyst for hydroboration than a NacNacZnH complex. Calculations indicate the {7DIPP}Zn-H congener has a more pronounced biphilic character than that of NacNacZnH (greater electrophilicity at Zn while maintaining a basic hydride). Of the two hydroboration steps, the hydroboration of alkynylBPin is catalyzed by Zn-H complexes, while the hydroboration of 1,1-diborylalkenes is catalyzed more effectively by B-H-containing species, including boranes formed in situ from HBPin. These observations led to a one-pot protocol being developed for converting terminal alkynes into 1,1,1-triborylalkanes that utilizes {7DIPP}ZnPh(NTf2) as a precatalyst for the formation of 1,1-diborylated alkenes with subsequent addition of BH3-THF as catalyst for the final step.
机译:报道了来自末端炔烃和吡啶硼烷(HBPIN)的1,1,1-甲氧烷烷烃的合成。该转化通过初始Zn催化的炔烃C-H硼化,其可以使用NaCNACZNH复合物实现。通过C-H锌化的NaCnaCzN-炔基的组合与炔基-BIN和NacnaCznH的平衡存在于平衡中。通过不可逆反应与炔醇的不可逆反应消耗NaCnaCZNH的消耗,即使H-2驱使炔烃C-H骨质化以完成必不可少。炔基-BP蛋白化合物在用{7dipp} ZnH(NTF2)复合物(7Dipp = 1,3-双(2,6-二异丙基蝶)-4,5,6,7-四氢-1H-1,3-二氮杂化-3-Ium-2-IDE)氢化物的更活跃的催化剂比NacnaCzNH复合物。计算表明{7DIPP} Zn-H同一型具有比Nacnacznh(在Zn的更高的亲电性同时保持碱性氢化物)更明显的双胆晶。在两个水合步骤中,通过Zn-H络合物催化炔基萘素的氢化物,而1,1-二硼烷烃的水散热通过B-H含物质更有效地催化,包括从HBPin原位形成的硼烷。这些观察结果导致了一种用于将终端醇酸酯转化为1,1,1-甲基甲烷的一锅协议,该烷烃利用{7dipp} Znph(NTF2)作为形成1,1-脱氮的烯烃的预催化剂,随后添加BH3 -thf作为最后一步的催化剂。

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  • 来源
    《Organometallics》 |2020年第8期|共7页
  • 作者单位

    Univ Edinburgh EastCHEM Sch Chem Edinburgh EH9 3FJ Midlothian Scotland;

    Univ Edinburgh EastCHEM Sch Chem Edinburgh EH9 3FJ Midlothian Scotland;

    Univ Edinburgh EastCHEM Sch Chem Edinburgh EH9 3FJ Midlothian Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 元素有机化合物;
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