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首页> 外文期刊>ACS catalysis >Selective Isomerization-Hydroformylation Sequence: A Strategy to Valuable α-Methyl-Branched Aldehydes from Terminal Olefins
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Selective Isomerization-Hydroformylation Sequence: A Strategy to Valuable α-Methyl-Branched Aldehydes from Terminal Olefins

机译:选择性异构化-氢甲酰化序列:一种从末端烯烃得到宝贵的α-甲基支化醛的策略

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摘要

For the first time, an original selective isomerizationhydroformylation sequence to convert terminal olefins bearing an anionic moiety to α-methyl-branched aldehydes with unprecedented selectivities is reported. This opens up new synthetic avenues to these valuable building blocks from inexpensive and bioavailable substrates. The catalytic system involves a suitable selective monoisomerization catalyst and a selective supramolecular catalyst that preorganizes a substrate molecule prior to the hydroformylation reaction via hydrogen bonding. In principle, the strategy can be extended to other classes of substrates, providing suitable catalysts for the hydroformylation of internal alkenes.
机译:首次报道了一种原始的选择性异构化加氢甲酰基化序列,该序列将具有阴离子部分的末端烯烃以前所未有的选择性转化为α-甲基支化的醛。这为廉价和可生物利用的底物为这些有价值的构成部分开辟了新的合成途径。催化体系包括合适的选择性单异构化催化剂和选择性超分子催化剂,其在通过氢键进行加氢甲酰化反应之前使底物分子预组织。原则上,该策略可以扩展到其他类型的底物,为内部烯烃的加氢甲酰化提供合适的催化剂。

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